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多重单细胞转录组学揭示了致病性SHP2变体的多种表型结果。

Multiplexed single-cell transcriptomics reveals diverse phenotypic outcomes for pathogenic SHP2 variants.

作者信息

van Vlimmeren Anne E, Giglio Ross M, Jiang Ziyuan, Lee Minhee, McFaline-Figueroa José L, Shah Neel H

出版信息

bioRxiv. 2025 Jul 2:2025.06.30.662374. doi: 10.1101/2025.06.30.662374.

Abstract

The protein tyrosine phosphatase SHP2, encoded by , is an important regulator of Ras/MAPK signaling that acts downstream of receptor tyrosine kinases and other transmembrane receptors. Germline mutations cause developmental disorders such as Noonan Syndrome, whereas somatic mutations drive various cancers. While many pathogenic mutations enhance SHP2 catalytic activity, others are inactivating or affect protein interactions, confounding our understanding of SHP2-driven disease. Here, we combine single-cell transcriptional profiling of cells expressing clinically diverse SHP2 variants with protein biochemistry, structural analysis, and cell biology to explain how pathogenic mutations dysregulate signaling. Our analyses reveal that loss of catalytic activity does not phenocopy SHP2 knock-out at the gene expression level, that some mechanistically distinct mutations have convergent phenotypic effects, and that different mutations at the same hotspot residue can yield divergent cell states. These findings provide a framework for understanding the connection between SHP2 structural perturbations, cellular outcomes, and human diseases.

摘要

由PTPN11基因编码的蛋白酪氨酸磷酸酶SHP2是Ras/MAPK信号传导的重要调节因子,作用于受体酪氨酸激酶和其他跨膜受体的下游。种系PTPN11基因突变会导致诸如努南综合征等发育障碍,而体细胞突变则会引发各种癌症。虽然许多致病突变增强了SHP2的催化活性,但其他突变则使其失活或影响蛋白质相互作用,这使我们对SHP2驱动的疾病的理解变得复杂。在这里,我们将表达临床上不同的SHP2变体的细胞的单细胞转录谱分析与蛋白质生物化学、结构分析和细胞生物学相结合,以解释致病突变如何失调信号传导。我们的分析表明,催化活性的丧失在基因表达水平上不会模拟SHP2基因敲除,一些机制上不同的突变具有趋同的表型效应,并且同一热点残基处的不同突变可以产生不同的细胞状态。这些发现为理解SHP2结构扰动、细胞结果和人类疾病之间的联系提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a46/12236728/3aaa47a96e2e/nihpp-2025.06.30.662374v1-f0001.jpg

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