首页> 美国卫生研究院文献>The EMBO Journal >Phosphorylation of desmin in vitro inhibits formation of intermediate filaments; identification of three kinase A sites in the aminoterminal head domain.
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Phosphorylation of desmin in vitro inhibits formation of intermediate filaments; identification of three kinase A sites in the aminoterminal head domain.

机译:结蛋白的体外磷酸化抑制了中间丝的形成;鉴定氨基末端头部结构域中的三个激酶A位点。

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摘要

The in vitro phosphorylation of chicken desmin by the catalytic subunit of cAMP-dependent protein kinase was analysed. Phosphorylated desmin loses the ability to form intermediate filaments (IFs). Fragmentation at the sole cysteine and mild chymotryptic treatment show a differential phosphorylation of the three structural domains. Only the amino-terminal head domain is the target of the kinase. Peptide analysis shows that serine 29 is fully phosphorylated, while serine 35 and 50 are phosphorylated at least at 22 and 50% respectively. All three sites show the sequence arginine-X-serine with X being a small residue. These results strengthen the view that the nonhelical head domain has a strong influence on filament integrity most likely via a direct influence of some of its arginine residues. Taken together with previous results (Inagaki et al., 1987) on the phosphorylation of vimentin by kinase A, a new view on IFs emerges. Phosphorylation could allow for regulatory processes in assembly and turnover.
机译:分析了cAMP依赖性蛋白激酶的催化亚基对鸡结蛋白的体外磷酸化作用。磷酸化的结蛋白丧失了形成中间长丝(IF)的能力。唯一的半胱氨酸片段化和温和的糜蛋白酶处理显示三个结构域的差异磷酸化。只有氨基末端的头部结构域是激酶的靶标。肽分析显示丝氨酸29被完全磷酸化,而丝氨酸35和50分别被磷酸化至少22%和50%。所有三个位点均显示精氨酸-X-丝氨酸序列,其中X为小残基。这些结果加强了这样一种观点,即非螺旋头部结构域很可能通过某些精氨酸残基的直接影响而对细丝完整性产生强烈影响。结合以前关于激酶A修饰波形蛋白的研究结果(Inagaki等,1987),出现了有关IF的新观点。磷酸化可允许组装和周转中的调节过程。

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