Zidesamtinib Selective Targeting of Diverse ROS1 Drug-Resistant Mutations

Зидезамтиниб: селективное нацеливание на различные лекарственно-резистентные мутации ROS1
Franklin Gu, Joshua C. Horan, Anupong Tangpeerachaikul, Scot Mente, Henry E. Pelish, Joe Magrino
2025-04-29

ROS1 G2032RROS1 resistance mutationsZidesamtinib (NVL-520)intracranial xenograft brain metastasis modelmacrocyclic tyrosine kinase inhibitor
Zidesamtinib (NVL-520) is a ROS1-selective macrocyclic tyrosine kinase inhibitor designed with the aim to address clinical challenges for patients with non-small cell lung or other cancers that are ROS1 fusion-positive. These challenges include emergent ROS1 resistance mutations and brain metastases that can lead to disease progression and central nervous system adverse events attributed to off-target tropomyosin-related kinase inhibition that can be treatment-limiting. We evaluated zidesamtinib in accelerated mutagenesis screens and a brain tumor model, comparing it with other approved or investigational ROS1 inhibitors. At clinically relevant concentrations, zidesamtinib robustly inhibited >1,500 pooled ROS1 mutants with virtually no resistance emerging (≤1%), outperforming comparators crizotinib, entrectinib, and repotrectinib. Zidesamtinib also induced more durable responses than repotrectinib and taletrectinib in an aggressive intracranial ROS1 G2032R xenograft model. A 2.2 Å cocrystal structure with ROS1 G2032R, the most frequently identified ROS1 resistance mutation, reveals that zidesamtinib uniquely accommodates the mutated residue while potentially clashing with tropomyosin-related kinases, consistent with its selective ROS1-targeting design and supported by computational modeling. Taken together, these data support zidesamtinib's potential as a novel best-in-class ROS1 inhibitor.
1
A 2.2 Å cocrystal structure of zidesamtinib with ROS1 G2032R shows the compound uniquely accommodates the G2032R mutation and, based on modeling, may sterically clash with tropomyosin-related kinases, consistent with selective ROS1 targeting.
2
At clinically relevant concentrations, zidesamtinib robustly inhibited over 1,500 pooled ROS1 mutants with virtually no resistance emerging (≤1%), outperforming crizotinib, entrectinib, and repotrectinib in accelerated mutagenesis screens.
3
Overall data support zidesamtinib's potential as a novel best-in-class ROS1 inhibitor for treatment-resistant and intracranial ROS1-driven cancers.
4
Zidesamtinib (NVL-520) is a ROS1-selective macrocyclic tyrosine kinase inhibitor designed to address ROS1 resistance mutations and brain metastases in ROS1 fusion-positive cancers.
5
Zidesamtinib produced more durable responses than repotrectinib and taletrectinib in an aggressive intracranial ROS1 G2032R xenograft brain tumor model.

Zidesamtinib (NVL-520) as a ROS1-selective macrocyclic tyrosine kinase inhibitor

Selective inhibition potency and breadth against diverse ROS1 drug-resistant mutations (including G2032R), brain-penetrant efficacy in intracranial xenograft models, and structural basis of selectivity versus off-target TRK inhibition

Publication Details
Publication Date
2025-04-29
Journal
Publisher
ISSN
Cited by
7
Access Type
Author Information
Authors
Franklin Gu
Joshua C. Horan
Anupong Tangpeerachaikul
Scot Mente
Henry E. Pelish
Joe Magrino
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%