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PKA Cα subunit mutation triggers caspase-dependent RIIβ subunit degradation via Ser114 phosphorylation

机译:PKACα亚基突变通过Ser114磷酸化触发Caspase依赖性的Riiβ亚基降解

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Mutations in the PRKACA gene are the most frequent cause of cortisol-producing adrenocortical adenomas leading to Cushing’s syndrome. PRKACA encodes for the catalytic subunit α of protein kinase A (PKA). We already showed that PRKACA mutations lead to impairment of regulatory (R) subunit binding. Furthermore, PRKACA mutations are associated with reduced RIIβ protein levels; however, the mechanisms leading to reduced RIIβ levels are presently unknown. Here, we investigate the effects of the most frequent PRKACA mutation, L206R, on regulatory subunit stability. We find that Ser 114 phosphorylation of RIIβ is required for its degradation, mediated by caspase 16. Last, we show that the resulting reduction in RIIβ protein levels leads to increased cortisol secretion in adrenocortical cells. These findings reveal the molecular mechanisms and pathophysiological relevance of the R subunit degradation caused by PRKACA mutations, adding another dimension to the deregulation of PKA signaling caused by PRKACA mutations in adrenal Cushing’s syndrome.
机译:Prkaca基因中的突变是皮质醇产生的肾上腺皮质腺瘤的最常见原因导致缓冲综合征。 Prkaca编码蛋白激酶A(PKA)的催化亚单位α。我们已经表明,Prkaca突变导致调节(R)亚基结合的损害。此外,Prkaca突变与降低的Riiβ蛋白水平有关;然而,导致RIIβ水平降低的机制目前是未知的。在这里,我们研究了最常见的Prkaca突变,L206R对调节亚基稳定性的影响。我们发现,通过Caspase 16介导的RIIβ的SER 114磷酸化。最后,我们表明导致RIIβ蛋白水平的降低导致肾上腺皮质细胞中的皮质醇分泌增加。这些发现揭示了Prkaca突变引起的r亚基降解的分子机制和病理生理学相关性,并在肾上腺糊化综合征中PKA突变引起的PKA信号传导的放松管测量。

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