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人体受体酪氨酸激酶的物理和功能相互作用图谱。

Physical and functional interactome atlas of human receptor tyrosine kinases.

机构信息

Institute of Biotechnology, HiLIFE, University of Helsinki, Helsinki, Finland.

出版信息

EMBO Rep. 2022 Jun 7;23(6):e54041. doi: 10.15252/embr.202154041. Epub 2022 Apr 5.

Abstract

Much cell-to-cell communication is facilitated by cell surface receptor tyrosine kinases (RTKs). These proteins phosphorylate their downstream cytoplasmic substrates in response to stimuli such as growth factors. Despite their central roles, the functions of many RTKs are still poorly understood. To resolve the lack of systematic knowledge, we apply three complementary methods to map the molecular context and substrate profiles of RTKs. We use affinity purification coupled to mass spectrometry (AP-MS) to characterize stable binding partners and RTK-protein complexes, proximity-dependent biotin identification (BioID) to identify transient and proximal interactions, and an in vitro kinase assay to identify RTK substrates. To identify how kinase interactions depend on kinase activity, we also use kinase-deficient mutants. Our data represent a comprehensive, systemic mapping of RTK interactions and substrates. This resource adds information regarding well-studied RTKs, offers insights into the functions of less well-studied RTKs, and highlights RTK-RTK interactions and shared signaling pathways.

摘要

许多细胞间通讯是通过细胞表面受体酪氨酸激酶(RTKs)来实现的。这些蛋白质在受到生长因子等刺激时会磷酸化其下游细胞质底物。尽管它们具有核心作用,但许多 RTK 的功能仍未得到很好的理解。为了解决缺乏系统知识的问题,我们应用三种互补的方法来绘制 RTKs 的分子环境和底物图谱。我们使用亲和纯化结合质谱(AP-MS)来描述稳定的结合伙伴和 RTK-蛋白质复合物,使用邻近依赖性生物素鉴定(BioID)来鉴定瞬时和近端相互作用,以及体外激酶测定来鉴定 RTK 底物。为了确定激酶相互作用如何依赖于激酶活性,我们还使用了激酶缺陷突变体。我们的数据代表了 RTK 相互作用和底物的全面系统映射。该资源增加了关于研究充分的 RTKs 的信息,提供了对研究较少的 RTKs 功能的深入了解,并突出了 RTK-RTK 相互作用和共享信号通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0761/9171411/80c84c255f82/EMBR-23-e54041-g011.jpg

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