首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Identification by mass spectrometry of the phosphorylated residue responsible for activation of the catalytic domain of myosin I heavy chain kinase a member of the PAK/STE20 family
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Identification by mass spectrometry of the phosphorylated residue responsible for activation of the catalytic domain of myosin I heavy chain kinase a member of the PAK/STE20 family

机译:通过质谱鉴定负责激活肌球蛋白I重链激酶(PAK / STE20家族成员)的催化结构域的磷酸化残基

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摘要

Myosin I heavy chain kinase from Acanthamoeba castellanii is activated in vitro by autophosphorylation (8–10 mol of P per mol). The catalytically active C-terminal domain produced by trypsin cleavage of the phosphorylated kinase contains 2–3 mol of P per mol. However, the catalytic domain expressed in a baculovirus–insect cell system is fully active as isolated without autophosphorylation in vitro. We now show that the expressed catalytic domain is inactivated by incubation with acid phosphatase and regains activity upon autophosphorylation. The state of phosphorylation of all of the hydroxyamino acids in the catalytic domain were determined by mass spectrometry of unfractionated protease digests. Ser-627 was phosphorylated in the active, expressed catalytic domain, lost its phosphate when the protein was incubated with phosphatase, and was rephosphorylated when the dephosphorylated protein was incubated with ATP. No other residue was significantly phosphorylated in any of the three samples. Thus, phosphorylation of Ser-627, which is in the same position as the Ser and Thr residues that are phosphorylated in many other kinases, is necessary and sufficient for full activity of the catalytic domain. Ser-627 is also phosphorylated when full-length, native kinase is activated by autophosphorylation.
机译:棘孢棘阿米巴的肌球蛋白I重链激酶在体外通过自磷酸化(每摩尔8-10摩尔磷)被激活。胰蛋白酶切割磷酸化激酶产生的具有催化活性的C末端结构域每摩尔含有2-3摩尔P。但是,杆状病毒-昆虫细胞系统中表达的催化结构域具有完全的活性,可以在体外分离而无需自身磷酸化。我们现在显示通过与酸性磷酸酶孵育而失活表达的催化结构域,并在自磷酸化后恢复活性。通过未分级蛋白酶消化物的质谱法确定催化域中所有羟基氨基酸的磷酸化状态。 Ser-627在活性的表达催化结构域中被磷酸化,当蛋白质与磷酸酶一起孵育时丢失其磷酸盐,当脱磷酸化的蛋白质与ATP孵育时被重新磷酸化。在三个样品中的任何一个中,没有其他残基被明显磷酸化。因此,Ser-627的磷酸化与在许多其他激酶中被磷酸化的Ser和Thr残基在同一位置,对于催化域的全部活性而言是必需的和充分的。当全长天然激酶通过自磷酸化激活时,Ser-627也被磷酸化。

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