首页> 美国卫生研究院文献>Biochemical Journal >Identification of the regulatory autophosphorylation site of autophosphorylation-dependent protein kinase (auto-kinase). Evidence that auto-kinase belongs to a member of the p21-activated kinase family.
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Identification of the regulatory autophosphorylation site of autophosphorylation-dependent protein kinase (auto-kinase). Evidence that auto-kinase belongs to a member of the p21-activated kinase family.

机译:鉴定自磷酸化依赖性蛋白激酶(自激酶)的调节性自磷酸化位点。自身激酶属于p21激活激酶家族成员的证据。

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摘要

Autophosphorylation-dependent protein kinase (auto-kinase) was identified from pig brain and liver on the basis of its unique autophosphorylation/activation property [Yang, Fong, Yu and Liu (1987) J. Biol. Chem. 262, 7034-7040; Yang, Chang and Soderling (1987) J. Biol. Chem. 262, 9421-9427]. Its substrate consensus sequence motif was determined as being -R-X-(X)-S*/T*-X3-S/T-. To characterize auto-kinase further, we partly sequenced the kinase purified from pig liver. The N-terminal sequence (VDGGAKTSDKQKKKAXMTDE) and two internal peptide sequences (EKLRTIV and LQNPEK/ILTP/FI) of auto-kinase were obtained. These sequences identify auto-kinase as a C-terminal catalytic fragment of p21-activated protein kinase 2 (PAK2 or gamma-PAK) lacking its N-terminal regulatory region. Auto-kinase can be recognized by an antibody raised against the C-terminal peptide of human PAK2 by immunoblotting. Furthermore the autophosphorylation site sequence of auto-kinase was successfully predicted on the basis of its substrate consensus sequence motif and the known PAK2 sequence, and was further demonstrated to be RST(P)MVGTPYWMAPEVVTR by phosphoamino acid analysis, manual Edman degradation and phosphopeptide mapping via the help of phosphorylation site analysis of a synthetic peptide corresponding to the sequence of PAK2 from residues 396 to 418. During the activation process, auto-kinase autophosphorylates mainly on a single threonine residue Thr402 (according to the sequence numbering of human PAK2). In addition, a phospho-specific antibody against a synthetic phosphopeptide containing this identified sequence was generated and shown to be able to differentially recognize the activated auto-kinase autophosphorylated at Thr402 but not the non-phosphorylated/inactive auto-kinase. Immunoblot analysis with this phospho-specific antibody further revealed that the change in phosphorylation level of Thr402 of auto-kinase was well correlated with the activity change of the kinase during both autophosphorylation/activation and protein phosphatase-mediated dephosphorylation/inactivation processes. Taken together, our results identify Thr402 as the regulatory autophosphorylation site of auto-kinase, which is a C-terminal catalytic fragment of PAK2.
机译:基于其独特的自磷酸化/激活特性,从猪脑和肝脏中鉴定了自磷酸化依赖性蛋白激酶(自激酶)[Yang,Fong,Yu and Liu(1987)J.化学262,7034-7040; Yang,Chang and Soderling(1987)J.Biol。化学262,9421-9427]。其底物共有序列基序确定为-R-X-(X)-S * / T * -X3-S / T-。为了进一步表征自身激酶,我们对从猪肝中纯化的激酶进行了部分测序。获得了自身激酶的N末端序列(VDGGAKTSDKQKKKAXMTDE)和两个内部肽序列(EKLRTIV和LQNPEK / ILTP / FI)。这些序列将自身激酶鉴定为缺少其N端调控区的p21活化蛋白激酶2(PAK2或γ-PAK)的C端催化片段。自身激酶可以通过免疫印迹被针对人PAK2 C端肽的抗体识别。此外,基于其底物共有序列基序和已知的PAK2序列,成功预测了自身激酶的自磷酸化位点序列,并通过磷酸氨基酸分析,手动埃德曼降解和通过借助于与残基396至418的PAK2序列相对应的合成肽的磷酸化位点分析。在激活过程中,自激酶主要在单个苏氨酸残基Thr402上自动磷酸化(根据人PAK2的序列号)。另外,产生了针对含有该鉴定的序列的针对合成磷酸肽的磷酸特异性抗体,并显示出能够区别识别在Thr402自身磷酸化的活化的自身激酶,而不是非磷酸化/失活的自身激酶。用这种磷酸特异性抗体进行的免疫印迹分析进一步揭示,在自身磷酸化/激活和蛋白磷酸酶介导的去磷酸化/失活过程中,自激激酶的Thr402磷酸化水平的变化与激酶的活性变化密切相关。两者合计,我们的结果确定Thr402是自身激酶的调节性自磷酸化位点,它是PAK2的C末端催化片段。

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