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Nurix Therapeutics Announces New Preclinical Data Highlighting Breadth of Targeted Protein Degradation Pipeline at AACR 2026

(Moderate)
(Positive)
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Nurix Therapeutics (Nasdaq: NRIX) disclosed preclinical and early clinical data at AACR 2026 across three oncology programs: pan-mutant BRAF (NRX-0305), CBL-B (NX-1607), and AURKA (NRX-4972).

Key findings include a 142% lifespan increase for NRX-0305 in a BRAF inhibitor–resistant brain metastasis PDX, activity across 14 BRAF PDX models, sub-nanomolar CBL-B inhibitor binding with pharmacodynamic biomarker modulation in patients, and superior SCLC survival with NRX-4972 versus AURKA inhibitors.

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Positive

  • NRX-0305 delivered a 142% lifespan increase in a BRAF inhibitor–resistant intracranial PDX
  • NRX-0305 showed activity across 14 BRAF mutant PDX models spanning Class 1/2/3
  • NX-1607 advanced to a series with sub-nanomolar binding affinity and enhanced T cell activation
  • NX-1607 demonstrated single-agent anti-tumor activity and synergy with anti-PD-1 in multiple models
  • NRX-4972 achieved 60% survival in H82 SCLC mice versus 0% for AURKA inhibitors

Negative

  • Most efficacy data are preclinical; clinical efficacy has not been demonstrated in patients
  • Clinical evidence limited to early dose-dependent PK and proximal biomarker (pHS1) modulation for NX-1607

News Market Reaction – NRIX

+1.16%
+1.16% Session close to close

In the Apr 22 session, NRIX gained 1.16%, reflecting a mild positive market reaction.

Data tracked by StockTitan Argus on the day of publication.

Market Context

This announcement showcases broad preclinical strength across pan-mutant BRAF, CBL-B and AURKA progr...
Analysis

This announcement showcases broad preclinical strength across pan-mutant BRAF, CBL-B and AURKA programs, including a 142% survival gain over dabrafenib in a resistant brain metastasis model and 60% survival in an aggressive SCLC model with NRX-4972. It reinforces Nurix’s strategy in targeted protein degradation and induced proximity pharmacology, building on prior AACR previews. Investors may watch for clinical readouts, durability of responses, and how increased R&D spending from recent quarters supports advancing these candidates.

Key Figures

Survival increase vs dabrafenib: 142% increase in lifespan Comparator survival benefit: 12% increase in lifespan PDX models tested: 14 PDX models +1 more
4 metrics
Survival increase vs dabrafenib 142% increase in lifespan BRAF inhibitor–resistant melanoma brain metastasis PDX model treated with NRX-0305
Comparator survival benefit 12% increase in lifespan Approved BRAF inhibitor dabrafenib in the same PDX model
PDX models tested 14 PDX models Preclinical activity of NRX-0305 across Class 1/2/3 BRAF-mutant cancers
NRX-4972 survival benefit 60% of mice surviving H82 SCLC model with twice-daily NRX-4972 dosing vs 0% on AURKA inhibitors

Historical Context

5 past events · Latest: Apr 08 (Negative)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Apr 08 Q1 2026 earnings Negative -4.6% Higher R&D, wider net loss and lower collaboration revenue in Q1 2026.
Apr 07 Investor conference Positive +3.5% Announcement of CEO fireside chat at Needham Virtual Healthcare Conference.
Mar 23 AACR preview Positive -1.7% Planned AACR 2026 talks and posters on CBL-B, AURKA and mutant BRAF.
Jan 28 FY25 earnings Negative -1.6% FY2025 results with large net loss and sizable R&D investment disclosed.
Jan 12 2026 objectives Positive -4.8% Outlined 2026 goals for bexobrutideg and broader degrader pipeline in cancer and autoimmune.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

NRIX has often traded lower after earnings and some positive pipeline updates, with occasional upside around conference participation.

Recent Company History

Over the last few months, Nurix combined steady clinical progress with volatile stock reactions. Earnings updates on Jan 28 and Apr 8 reported growing R&D spend and wider losses, and shares fell after both. Pipeline and strategy updates on Jan 12 and Mar 23 highlighted bexobrutideg data and AACR presentations but also saw negative reactions. In contrast, an investor conference announcement on Apr 7 coincided with a gain. Today’s AACR preclinical data extends the same oncology themes (CBL-B, AURKA, mutant BRAF) flagged in the March AACR preview.

Key Terms

targeted protein degradation, induced proximity pharmacology, pan-mutant braf, cbl-b, +4 more
8 terms
targeted protein degradation medical
"clinical-stage biopharmaceutical company developing targeted protein degradation therapies"
Targeted protein degradation is a drug approach that uses small molecules to mark harmful or malfunctioning proteins inside cells so the cell’s own disposal system breaks them down, rather than simply blocking their activity. For investors, it matters because this method can potentially tackle diseases that traditional drugs cannot reach, offering a new class of therapies with broad commercial and patent potential—like switching from silencing a problem to removing it entirely.
induced proximity pharmacology medical
"AACR Advances session "Induced Proximity Pharmacology: Degraders and Beyond.”"
A drug discovery approach that uses small molecules to force two normally separate proteins to come together so one can change or destroy the other, rather than directly blocking a target’s natural activity. For investors this matters because it opens treatment options for proteins previously considered untouchable, creating new drug candidates and platform value much like a versatile tool that lets a mechanic fix parts other tools couldn’t reach.
pan-mutant braf medical
"including programs targeting pan-mutant BRAF, CBL-B and Aurora Kinase A (AURKA)"
Pan-mutant BRAF describes a drug or diagnostic approach designed to recognize and act against many different cancer-causing changes in the BRAF gene rather than a single mutation. For investors, it matters because a therapy that works across multiple BRAF variants can serve a larger group of patients and reduce the need for multiple specialized products—think of it as a single wrench that fits many bolt sizes, increasing potential market reach and simplifying treatment decisions.
cbl-b medical
"mechanistic validation of Nurix’s approach to CBL-B, Aurora kinase A (AURKA) and mutant BRAF"
cbl-b is a protein inside immune cells that acts like a brake on the body’s immune response; when it is active it helps prevent immune cells from attacking too strongly, and when blocked it can boost immune activity. Investors should watch cbl-b because drugs that inhibit or modulate it are being developed to strengthen immune attacks against cancer or to calm autoimmune reactions, meaning successes or setbacks can materially affect companies working on related therapies. An everyday analogy: it’s like a thermostat that can be turned down to cool an overactive immune system or turned up to raise the immune response against disease.
aurora kinase a (aurka) medical
"Aurora Kinase A (AURKA), as well as a featured AACR Advances session presentation"
Aurora kinase A (AURKA) is an enzyme that helps control how cells divide by acting like a traffic cop at the cell’s center, making sure chromosomes split and the division process runs on schedule. When AURKA is overactive it can let cells divide out of control and contribute to cancer, so drugs that block it are studied as potential cancer treatments and can materially affect biotech valuations, clinical trial outcomes and regulatory risk for investors.
patient-derived xenograft (pdx) medical
"melanoma brain metastasis patient-derived xenograft (PDX) model, NRX-0305 significantly extended"
A patient-derived xenograft (PDX) is a laboratory model created by implanting a small piece of a human tumor into an immune-compromised animal, most often a mouse, so the cancer can grow in a living system. Investors care because PDX models are used to test whether experimental drugs shrink real human tumors before expensive clinical trials, serving like a dress rehearsal that can help predict success, reduce risk, and guide which drug candidates move forward.
syngeneic tumor models medical
"single-agent anti-tumor activity across multiple syngeneic tumor models, including colorectal"
Syngeneic tumor models are laboratory tests in which cancer cells are implanted into animals that are genetically identical to the donor, so the recipient’s immune system is intact and reacts naturally to the tumor. For investors, these models matter because they give early, realistic signals about how immune-based therapies and cancer drugs might work in a living immune system—think of them as dress rehearsals that reveal whether a treatment can engage the body’s defenses before moving to costly human trials.
anti-pd-1 therapy medical
"NX-1607 also synergized with anti-PD-1 therapy to significantly enhance survival"
Anti-PD-1 therapy are drugs that block the PD-1 protein on immune cells, effectively releasing the “brakes” that can prevent the body from attacking cancer cells; think of it like removing a safety lock so security guards can better recognize intruders. Investors care because these therapies can transform treatment outcomes, drive significant sales if approved for multiple cancers, and carry regulatory, patent and competitive risks that affect a company’s valuation.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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Data showcase advances across oncology pipeline including pan-mutant BRAF, CBL-B and AURKA programs

Presentations reinforce potential of degraders to overcome limitations of inhibitors and expand therapeutic reach

Featured AACR Advances session underscores Nurix’s scientific leadership in targeted protein degradation and induced proximity pharmacology

BRISBANE, Calif., April 22, 2026 (GLOBE NEWSWIRE) -- Nurix Therapeutics, Inc. (Nasdaq: NRIX), a clinical-stage biopharmaceutical company developing targeted protein degradation therapies, today announced new preclinical data from multiple oncology programs at the American Association for Cancer Research (AACR) Annual Meeting 2026.

The presentations highlight continued progress across Nurix’s oncology pipeline, including programs targeting pan-mutant BRAF, CBL-B and Aurora Kinase A (AURKA), as well as a featured AACR Advances session presentation highlighting the broader scientific progress and clinical translation of targeted protein degradation. Collectively, these data provide additional mechanistic validation of Nurix’s approach to CBL-B, Aurora kinase A (AURKA) and mutant BRAF to address key limitations of traditional approaches, including resistance, incomplete pathway suppression, and inability to target non-enzymatic protein functions.

“These data, together with our participation in the AACR Advances session, highlight the growing clinical and scientific validation of targeted protein degradation as a new therapeutic modality,” said Arthur T. Sands, M.D., Ph.D., president and chief executive officer. “Across multiple programs, we are seeing consistent evidence that these therapies can drive deeper and more durable biological responses, supporting their potential to deliver meaningful benefit for patients.”

AACR Advances Session
Later today, April 22, 2026, Gwenn Hansen, Ph.D., chief scientific officer of Nurix, will present “Designing Effective Degrader Therapeutics: What Early Clinical Experience Has Taught Us” as part of the AACR Advances session "Induced Proximity Pharmacology: Degraders and Beyond. Dr. Hansen’s remarks will provide a broad perspective on recent advances in targeted protein degradation, including insights from early clinical experience and the evolving potential of induced proximity approaches to expand the druggable target space and improve therapeutic outcomes.

Pan-Mutant BRAF Degrader Program
In a poster presentation titled “NRX-0305, an orally bioavailable, CNS penetrant pan-mutant BRAF degrader demonstrates robust efficacy in intracranial models of melanoma brain metastasis and primary glioma,” Nurix reported that NRX-0305 achieves dose-proportional pharmacokinetics across plasma, tumor, and brain, enabling robust degradation of mutant BRAF and downstream pathway inhibition. These properties translate into potent antitumor activity in intracranial glioma and melanoma models while selectively sparing wildtype BRAF and avoiding paradoxical MAPK pathway activation. In a clinically relevant BRAF inhibitor–resistant melanoma brain metastasis patient-derived xenograft (PDX) model, NRX-0305 significantly extended survival versus both vehicle and dabrafenib, delivering a 142% increase in lifespan, compared with approximately 12% for the approved BRAF inhibitor.

Additional data were presented in a poster titled “NRX-0305 is an orally bioavailable, pan-mutant BRAF degrader that exhibits single-agent and combination efficacy with MEKi or anti-EGFR across Class 1/2/3 BRAF-mutant cancers.” In preclinical tumor models, NRX-0305 demonstrates broad activity across mutant BRAF classes, including activity across 14 PDX models spanning Class 1 treatment-resistant, Class 2, and Class 3 BRAF mutations. Combination of NRX-0305 with MEK inhibitors or anti-EGFR therapy enhanced tumor regressions in Class 2 and drove complete responses in Class 1 and 3 models. Notably, the complete regressions are achieved at lower MEK inhibitor dose levels, supporting the potential for an improved therapeutic window relative to current treatment approaches.

CBL-B Program
In an oral presentation titled “Discovery and characterization of CBL-B intramolecular glue inhibitors that increase T cell activation and suppress tumor growth,” Nurix reported the discovery and characterization of novel intramolecular glue inhibitors targeting CBL-B, an E3 ubiquitin ligase that negatively regulates T, B, and NK cell activation. Using mechanism-agnostic screening assays guided by CBL-B biology, Nurix identified a novel series of intramolecular glue inhibitors that stabilize the closed, inactive conformation of CBL-B, representing a first-in-class mechanism of action. Through structure-guided optimization, this series was advanced to NX-1607, a potent and selective CBL-B inhibitor with sub-nanomolar binding affinity. In preclinical studies, NX-1607 enhanced T cell activation, as evidenced by increased IL-2 and IFN-γ secretion in response to TCR stimulation, and demonstrated single-agent anti-tumor activity across multiple syngeneic tumor models, including colorectal, triple-negative breast cancer, and B cell lymphoma. NX-1607 also synergized with anti-PD-1 therapy to significantly enhance survival across multiple models. Early clinical data demonstrated dose-dependent pharmacokinetics and modulation of the proximal pharmacodynamic biomarker pHS1 in CD8 T cells, providing initial evidence of target engagement in patients.

Aurora Kinase A (AURKA) Degrader Program
In a poster presentation titled “NRX-4972, a selective, oral, Aurora kinase A degrader, demonstrates increased efficacy in an SCLC tumor model, and greater in vitro synergy than an AURKA inhibitor,” Nurix reported new data demonstrating that targeted degradation of AURKA enables more complete biological modulation compared to inhibition alone. NRX-4972 exhibits central nervous system penetration and a favorable pharmacokinetic and pharmacodynamic profile, translating into superior antitumor activity in aggressive small cell lung cancer models, particularly with an optimized twice-daily dosing regimen. In the H82 SCLC model, twice-daily administration of NRX-4972 resulted in 60% of mice surviving to the end of the study, whereas none of the mice treated with AURKA inhibitors alisertib or LY3295668 survived. Mechanistically, degradation of AURKA results in downregulation of MYC and enhanced induction of DNA damage, apoptosis, and G2/M arrest. NRX-4972 also demonstrated broader and more potent synergy than an AURKA inhibitor in an in vitro screen of combination agents across triple-negative breast cancer, SCLC, and NSCLC cell lines, further supporting its therapeutic potential.

About NRX-0305
NRX-0305 is a potent, selective, and orally bioavailable central nervous system (CNS)-penetrant pan-mutant BRAF degrader that Nurix is exploring for use in oncology. Nurix has reported preclinical data demonstrating potent anti-tumor activity in multiple cell line-derived and patient-derived xenograft disease models representing Class 1, Class 2, and Class 3 B-RAF mutations. Anti-tumor activity was also observed in the setting of CNS disease and treatment-resistance, suggesting the potential for utility across a broad range of solid tumor types.

About NX-1607
NX-1607 is an investigational first-in-class oral inhibitor of the E3 ligase Casitas B-lineage lymphoma proto-oncogene B (CBL-B) being developed for immuno-oncology indications, including a range of solid tumor types. CBL-B is a cytoplasmic E3 ubiquitin ligase that negatively regulates T cell activation, making it an attractive target for immuno-oncology and offering a novel therapeutic approach to treat solid tumors. Inhibition of CBL-B in preclinical studies reverses T cell exhaustion, alleviates tumor induced immunosuppression, and may also exert direct antitumor effects. Nurix is evaluating NX-1607 in an ongoing Phase 1 trial in adults in a range of oncology indications. This study includes a thorough investigation of both dose and schedule in the Phase 1a portion. Additional information on the NX-1607 clinical trial can be accessed at www.clinicaltrials.gov (NCT05107674).

About NRX-4972
NRX-4972 is a CNS-penetrant, orally bioavailable and highly selective degrader of Aurora A kinase (AURKA). AURKA is an oncogene frequently overexpressed in adult solid tumors, hematologic malignancies, and pediatric cancers. Several AURKA inhibitors are effective in preclinical tumor models, but this activity has failed to translate into clinical efficacy. To address the limitations of inhibitors, Nurix has designed bifunctional targeted protein degraders of AURKA that enable removal of both enzymatic and scaffolding functions.

About Nurix Therapeutics, Inc.
Nurix Therapeutics is a clinical stage biopharmaceutical company focused on the discovery, development and commercialization of targeted protein degradation medicines, the next frontier in innovative drug design aimed at improving treatment options for patients with cancer and autoimmune diseases. Nurix’s wholly owned, clinical stage pipeline includes degraders of Bruton’s tyrosine kinase (BTK), a B-cell signaling protein, and inhibitors of Casitas B-lineage lymphoma proto-oncogene B (CBL-B), an E3 ligase that regulates activation of multiple immune cell types including T cells and NK cells. Nurix also is advancing multiple potentially first-in-class or best-in-class degraders and degrader antibody conjugates (DACs) in its preclinical pipeline. Nurix’s partnered drug discovery pipeline consists of a preclinical stage degrader of STAT6 in collaboration with Sanofi, a clinical stage degrader of IRAK4 in collaboration with Gilead, as well as multiple additional programs under collaboration agreements with Gilead Sciences, Inc., Sanofi S.A. and Pfizer Inc., within which Nurix retains certain options for co-development, co-commercialization and profit sharing in the United States for multiple drug candidates. Powered by an AI-integrated discovery engine capable of tackling virtually any protein class, and coupled with unparalleled ligase expertise, Nurix has built a formidable advantage in translating the science of targeted protein degradation into clinical advancements. Nurix aims to establish degrader-based treatments at the forefront of patient care, writing medicine’s next chapter with a new script to outmatch disease. Nurix is headquartered in San Francisco, California. For additional information visit http://www.nurixtx.com.

Forward-Looking Statements
This press release contains forward-looking statements within the meaning of the U.S. Private Securities Litigation Reform Act of 1995 and other federal securities laws. Any statements contained herein that do not describe historical facts are forward-looking statements that involve risks and uncertainties that could cause actual results to differ materially from those discussed in such forward-looking statements. Such risks and uncertainties include, among others, the risks described under the heading “Risk Factors” in Nurix’s Quarterly Report on Form 10-Q for the fiscal period ended February 28, 2026, and subsequent filings with the SEC. Any of these risks and uncertainties could materially and adversely affect Nurix’s business and results of operations, which could, in turn, have a significant and adverse impact on Nurix’s stock price. Nurix cautions you not to place undue reliance on any forward-looking statements, which speak only as of the date they are made. Nurix undertakes no obligation to update publicly any forward-looking statements to reflect new information, events or circumstances after the date they were made or to reflect the occurrence of unanticipated events.

Contacts:
Investors
Kris Fortner
Nurix Therapeutics, Inc.
kfortner@nurixtx.com

Sylvia Wheeler
Wheelhouse Life Science Advisors
swheeler@wheelhouselsa.com

Media
Aljanae Reynolds
Wheelhouse Life Science Advisors
areynolds@wheelhouselsa.com

Kris Fortner
Nurix Therapeutics, Inc.
Kfortner@nurixtx.com


FAQ

What did Nurix (NRIX) announce about NRX-0305 at AACR 2026?

NRX-0305 showed potent, dose-proportional PK, CNS penetration, and robust antitumor activity in models. According to the company, it extended survival by 142% in a BRAF inhibitor–resistant intracranial PDX and was active across 14 BRAF mutant PDX models.

What early clinical evidence did Nurix report for NX-1607 (CBL-B program)?

Early clinical data showed dose-dependent PK and target engagement biomarker modulation in patients. According to the company, NX-1607 also has sub-nanomolar binding and enhanced IL-2 and IFN-γ secretion in preclinical T cell assays.

How did NRX-4972 (AURKA degrader) perform versus AURKA inhibitors in preclinical models?

NRX-4972 produced superior antitumor activity and survival compared with inhibitors in SCLC models. According to the company, twice-daily dosing led to 60% survival in the H82 model while AURKA inhibitors showed 0% survival.

Does Nurix claim NRX-0305 can overcome resistance to current BRAF inhibitors?

Nurix reports NRX-0305 avoids paradoxical MAPK activation and extended survival in inhibitor-resistant models. According to the company, it demonstrated efficacy in a clinically relevant BRAF inhibitor–resistant melanoma brain metastasis PDX.

What is the investor significance of Nurix data presented at AACR 2026 for NRIX?

The data reinforce preclinical validation of multiple degrader programs with early clinical biomarker signals. According to the company, these results support further development but clinical efficacy and safety remain to be established in patients.