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库欣综合征驱动突变破坏蛋白激酶 A 的变构网络,改变其调节和底物特异性。

Cushing's syndrome driver mutation disrupts protein kinase A allosteric network, altering both regulation and substrate specificity.

机构信息

Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, MN 55455, USA.

Department of Chemistry, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Sci Adv. 2019 Aug 28;5(8):eaaw9298. doi: 10.1126/sciadv.aaw9298. eCollection 2019 Aug.

Abstract

Genetic alterations in the gene coding for the catalytic α subunit of the cAMP-dependent protein kinase A (PKA-C) are linked to cortisol-secreting adrenocortical adenomas, resulting in Cushing's syndrome. Among those, a single mutation (L205R) has been found in up to 67% of patients. Because the x-ray structures of the wild-type and mutant kinases are essentially identical, the mechanism explaining aberrant function of this mutant remains under active debate. Using NMR spectroscopy, thermodynamics, kinetic assays, and molecular dynamics simulations, we found that this single mutation causes global changes in the enzyme, disrupting the intramolecular allosteric network and eliciting losses in nucleotide/pseudo-substrate binding cooperativity. Remarkably, by rewiring its internal allosteric network, PKA-C is able to bind and phosphorylate non-canonical substrates, explaining its changes in substrate specificity. Both the lack of regulation and change in substrate specificity reveal the complex role of this mutated kinase in the formation of cortisol-secreting adrenocortical adenomas.

摘要

编码 cAMP 依赖性蛋白激酶 A(PKA-C)催化α亚基的 基因中的遗传改变与分泌皮质醇的肾上腺皮质腺瘤有关,导致库欣综合征。在这些改变中,高达 67%的患者发现存在单个突变(L205R)。由于野生型和突变型激酶的 X 射线结构基本相同,因此解释这种突变体异常功能的机制仍在积极争论中。使用 NMR 光谱、热力学、动力学测定和分子动力学模拟,我们发现这种单一突变导致酶的全局变化,破坏了分子内变构网络并引起核苷酸/伪底物结合协同性丧失。值得注意的是,通过重新布线其内部变构网络,PKA-C 能够结合和磷酸化非典型底物,解释其底物特异性的变化。缺乏调节和底物特异性的改变都揭示了这种突变激酶在形成分泌皮质醇的肾上腺皮质腺瘤中的复杂作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/010a/6713507/f2ca749cf5b9/aaw9298-F1.jpg

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