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Obscurin and KCTD6 regulate cullin-dependent small ankyrin-1 (sAnk1.5) protein turnover

机译:Obscurin和KCTD6调节cullin依赖性小锚蛋白1(sAnk1.5)蛋白更新

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摘要

Protein turnover through cullin-3 is tightly regulated by posttranslational modifications, the COP9 signalosome, and BTB/POZ-domain proteins that link cullin-3 to specific substrates for ubiquitylation. In this paper, we report how potassium channel tetramerization domain containing 6 (KCTD6) represents a novel substrate adaptor for cullin-3, effectively regulating protein levels of the muscle small ankyrin-1 isoform 5 (sAnk1.5). Binding of sAnk1.5 to KCTD6, and its subsequent turnover is regulated through posttranslational modification by nedd8, ubiquitin, and acetylation of C-terminal lysine residues. The presence of the sAnk1.5 binding partner obscurin, and mutation of lysine residues increased sAnk1.5 protein levels, as did knockdown of KCTD6 in cardiomyocytes. Obscurin knockout muscle displayed reduced sAnk1.5 levels and mislocalization of the sAnk1.5/KCTD6 complex. Scaffolding functions of obscurin may therefore prevent activation of the cullin-mediated protein degradation machinery and ubiquitylation of sAnk1.5 through sequestration of sAnk1.5/KCTD6 at the sarcomeric M-band, away from the Z-disk-associated cullin-3. The interaction of KCTD6 with ankyrin-1 may have implications beyond muscle for hereditary spherocytosis, as KCTD6 is also present in erythrocytes, and erythrocyte ankyrin isoforms contain its mapped minimal binding site.
机译:通过cullin-3的蛋白质更新受翻译后修饰,COP9信号小体和将cullin-3连接到特定底物进行泛素化的BTB / POZ域蛋白的调控。在本文中,我们报告了含有6的钾通道四聚结构域(KCTD6)如何代表cullin-3的新型底物衔接子,有效调节了肌肉小锚蛋白1同工型5(sAnk1.5)的蛋白质水平。 sAnk1.5与KCTD6的结合及其随后的转换通过nedd8,泛素和C端赖氨酸残基的乙酰化等翻译后修饰来调节。 sAnk1.5结合伴侣obscurin的存在以及赖氨酸残基的突变增加了sAnk1.5的蛋白水平,心肌细胞中KCTD6的敲低也是如此。 Obscurin基因敲除的肌肉显示出sAnk1.5水平降低和sAnk1.5 / KCTD6复合体的定位错误。因此,obscurin的脚手架功能可能会阻止cullin介导的蛋白质降解机制的激活和sAnk1.5的泛素化,方法是将sAnk1.5 / KCTD6隔离在与Z盘相关的cullin-3的肌节M波段上。 KCTD6与锚蛋白1的相互作用可能会影响肌肉以外的遗传性球囊细胞增多,因为KCTD6也存在于红细胞中,而红细胞锚蛋白同工型包含其映射的最小结合位点。

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