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Updated: Nov 8, 2025

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Selective Modulation of a Pan-Essential Protein as a Therapeutic Strategy in Cancer
Clare F Malone1,2,3, Neekesh V Dharia1,2,3,4, Guillaume Kugener2
1Department of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.
Abstract:
Cancer dependency maps, which use CRISPR/Cas9 depletion screens to profile the landscape of genetic dependencies in hundreds of cancer cell lines, have identified context-specific dependencies that could be therapeutically exploited. An ideal therapy is both lethal and precise, but these depletion screens cannot readily distinguish between gene effects that are cytostatic or cytotoxic. Here, we use a diverse panel of functional genomic screening assays to identify NXT1 as a selective and rapidly lethal in vivo relevant genetic dependency in MYCN-amplified neuroblastoma. NXT1 heterodimerizes with NXF1, and together they form the principal mRNA nuclear export machinery. We describe a previously unrecognized mechanism of synthetic lethality between NXT1 and its paralog NXT2: their common essential binding partner NXF1 is lost only in the absence of both. We propose a potential therapeutic strategy for tumor-selective elimination of a protein that, if targeted directly, is expected to cause widespread toxicity. SIGNIFICANCE: We provide a framework for identifying new therapeutic targets from functional genomic screens. We nominate NXT1 as a selective lethal target in neuroblastoma and propose a therapeutic approach where the essential protein NXF1 can be selectively eliminated in tumor cells by exploiting the NXT1-NXT2 paralog relationship.See related commentary by Wang and Abdel-Wahab, p. 2129.This article is highlighted in the In This Issue feature, p. 2113.
Insights
Researchers identified NXT1 as a lethal genetic dependency in neuroblastoma. Exploiting the NXT1-NXT2 paralog relationship offers a strategy to selectively eliminate the essential NXF1 protein in tumor cells, minimizing toxicity.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cancer dependency maps using CRISPR/Cas9 screens identify context-specific genetic vulnerabilities.
- Distinguishing cytostatic from cytotoxic gene effects is challenging with depletion screens.
Purpose of the Study:
- To identify selective and rapidly lethal genetic dependencies in MYCN-amplified neuroblastoma.
- To explore a novel synthetic lethality mechanism for targeted cancer therapy.
Main Methods:
- Utilized diverse functional genomic screening assays.
- Investigated the role of NXT1 and its paralog NXT2 in mRNA nuclear export.
- Examined the synthetic lethality between NXT1 and NXT2 through their interaction with NXF1.
Main Results:
- Identified NXT1 as a selective and lethal genetic dependency in MYCN-amplified neuroblastoma.
- Discovered a synthetic lethality mechanism involving NXT1, NXT2, and their common binding partner NXF1.
- NXF1 is essential and its loss is tolerated only when both NXT1 and NXT2 are absent.
Conclusions:
- NXT1 is a promising therapeutic target for neuroblastoma.
- Targeting the NXT1-NXT2 paralog relationship enables selective elimination of the essential NXF1 protein in tumor cells.
- This strategy offers a potential approach to overcome toxicity associated with direct targeting of essential proteins.
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