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刺猬信号通路中非典型GPCR信号转导的结构机制

A Structural Mechanism for Noncanonical GPCR Signal Transduction in the Hedgehog Pathway.

作者信息

Steiner William P, Iverson Nathan, Venkatakrishnan Varun, Wu Jian, Stepniewski Tomasz Maciej, Michaelson Zachary, Bröckel Jan W, Zhu Ju-Fen, Bruystens Jessica, Lee Annabel, Nelson Isaac, Bertinetti Daniela, Arveseth Corvin D, Tan Gerald, Spaltenstein Paul, Xu Jiewei, Hüttenhain Ruth, Kay Michael, Herberg Friedrich W, Selent Jana, Anand Ganesh S, Dunbrack Roland L, Taylor Susan S, Myers Benjamin R

机构信息

Department of Oncological Sciences, Huntsman Cancer Institute, University of Utah School of Medicine, Salt Lake City, UT, USA.

Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, UT, USA.

出版信息

bioRxiv. 2024 Nov 1:2024.10.31.621410. doi: 10.1101/2024.10.31.621410.

Abstract

The Hedgehog (Hh) signaling pathway is fundamental to embryogenesis, tissue homeostasis, and cancer. Hh signals are transduced via an unusual mechanism: upon agonist-induced phosphorylation, the noncanonical G protein-coupled receptor SMOOTHENED (SMO) binds the catalytic subunit of protein kinase A (PKA-C) and physically blocks its enzymatic activity. By combining computational structural approaches with biochemical and functional studies, we show that SMO mimics strategies prevalent in canonical GPCR and PKA signaling complexes, despite little sequence or secondary structural homology. An intrinsically disordered region of SMO binds the PKA-C active site, resembling the PKA regulatory subunit (PKA-R) / PKA-C holoenzyme, while the SMO transmembrane domain binds a conserved PKA-C interaction hub, similar to other GPCR-effector complexes. In contrast with prevailing GPCR signal transduction models, phosphorylation of SMO promotes intramolecular electrostatic interactions that stabilize key structural elements within the SMO cytoplasmic domain, thereby remodeling it into a PKA-inhibiting conformation. Our work provides a structural mechanism for a central step in the Hh cascade and defines a paradigm for disordered GPCR domains to transmit signals intracellularly.

摘要

刺猬索尼克(Hh)信号通路对于胚胎发育、组织稳态和癌症至关重要。Hh信号通过一种不同寻常的机制进行转导:在激动剂诱导的磷酸化作用下,非典型G蛋白偶联受体SMOOTHENED(SMO)与蛋白激酶A(PKA-C)的催化亚基结合,并在物理上阻断其酶活性。通过将计算结构方法与生化和功能研究相结合,我们发现,尽管SMO在序列或二级结构上几乎没有同源性,但它模仿了典型GPCR和PKA信号复合物中普遍存在的策略。SMO的一个内在无序区域与PKA-C活性位点结合,类似于PKA调节亚基(PKA-R)/PKA-C全酶,而SMO跨膜结构域与一个保守的PKA-C相互作用枢纽结合,类似于其他GPCR-效应器复合物。与普遍的GPCR信号转导模型不同,SMO的磷酸化促进分子内静电相互作用,从而稳定SMO细胞质结构域内的关键结构元件,进而将其重塑为一种抑制PKA的构象。我们的工作为Hh信号级联反应中的一个核心步骤提供了一种结构机制,并定义了无序GPCR结构域在细胞内传递信号的范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5552/12233533/e94acae76dec/nihpp-2024.10.31.621410v2-f0008.jpg

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