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蛋白激酶C与一种生理底物——肉豆蔻酰化富含丙氨酸的蛋白激酶C底物的高亲和力相互作用的特异性

Specificity of the high affinity interaction of protein kinase C with a physiological substrate, myristoylated alanine-rich protein kinase C substrate.

作者信息

Fujise A, Mizuno K, Ueda Y, Osada S, Hirai S, Takayanagi A, Shimizu N, Owada M K, Nakajima H, Ohno S

机构信息

Department of Molecular Biology, Yokohama City University School of Medicine, Japan.

出版信息

J Biol Chem. 1994 Dec 16;269(50):31642-8.

PMID:7989336
Abstract

Although myristoylated alanine-rich C kinase substrate (MARCKS), has been employed as an indicator for the activation of protein kinase C (PKC) in intact cells, little is known about its specificity for PKC family members. To address this question, we partially purified human MARCKS from baculovirus-infected cells and compared the kinetic parameters for phosphorylation by PKC isozymes, conventional PKC alpha (cPKC alpha), novel PKC delta (nPKC delta), nPKC epsilon, and atypical PKC zeta (apKC zeta), all of which are distributed in a wide variety of cells. cPKC alpha, nPKC delta, and nPKC epsilon efficiently phosphorylated intact MARCKS protein in vitro. The affinity of MARCKS for cPKC alpha, nPKC delta, and nPKC epsilon was extremely high and decreased in the order alpha > delta > epsilon with Km values of 10.7, 20.7, and 29.8 nM, respectively. The rate of phosphorylation also decreased in the same order. In contrast, a PKC zeta did not phosphorylate MARCKS efficiently, and we were unable to estimate the kinetic parameters. These results suggest that cPKC alpha, nPKC delta, and nPKC epsilon but not a PKC zeta are enzymes that phosphorylate MARCKS in response to PKC activators in intact cells. The structural requirements of MARCKS for efficient phosphorylation by these PKC members were then examined using a peptide that surrounds the phosphorylation site of MARCKS (peptide MARCKS). Interestingly, intact MARCKS showed a 90-150 times lower rate of phosphorylation by PKCs compared with peptide MARCKS, whereas the former showed a 40-180 times higher affinity for these PKC members. This implies that intact MARCKS protein retains a very high affinity for PKC with the sacrifice of its phospho-accepting activity. The structural requirements of PKC were then examined using a calpain-cleaved active fragment of nPKC delta. MARCKS was phosphorylated by the active catalytic fragment as efficiently as by intact nPKC delta, indicating that the kinase domain is sufficient for the high affinity interaction with intact MARCKS. However, gel overlay assay revealed that both intact nPKC delta and its regulatory domain bind to MARCKS, suggesting that both the kinase and regulatory domains of nPKC delta are involved in the high affinity interaction with intact MARCKS protein.

摘要

尽管富含肉豆蔻酰化丙氨酸的蛋白激酶C底物(MARCKS)已被用作完整细胞中蛋白激酶C(PKC)激活的指标,但对于其对PKC家族成员的特异性了解甚少。为了解决这个问题,我们从杆状病毒感染的细胞中部分纯化了人MARCKS,并比较了PKC同工酶,即传统PKCα(cPKCα)、新型PKCδ(nPKCδ)、nPKCε和非典型PKCζ(aPKCζ)对其磷酸化的动力学参数,所有这些同工酶都广泛分布于各种细胞中。cPKCα、nPKCδ和nPKCε在体外能有效地磷酸化完整的MARCKS蛋白。MARCKS对cPKCα、nPKCδ和nPKCε的亲和力极高,且按照α>δ>ε的顺序降低,其Km值分别为10.7、20.7和29.8 nM。磷酸化速率也按相同顺序降低。相反,aPKCζ不能有效地磷酸化MARCKS,我们无法估算其动力学参数。这些结果表明,在完整细胞中,响应PKC激活剂时,cPKCα、nPKCδ和nPKCε能磷酸化MARCKS,而aPKCζ则不能。然后,我们使用围绕MARCKS磷酸化位点的肽段(肽段MARCKS)研究了这些PKC成员有效磷酸化MARCKS所需的结构要求。有趣的是,与肽段MARCKS相比,完整的MARCKS被PKC磷酸化的速率低90 - 150倍,而前者对这些PKC成员的亲和力高40 - 180倍。这意味着完整的MARCKS蛋白以牺牲其磷酸接受活性为代价,对PKC仍保持非常高的亲和力。接着,我们使用nPKCδ经钙蛋白酶切割后的活性片段研究了PKC的结构要求。MARCKS被活性催化片段磷酸化的效率与被完整的nPKCδ磷酸化的效率一样高,这表明激酶结构域足以与完整的MARCKS进行高亲和力相互作用。然而,凝胶覆盖分析显示,完整的nPKCδ及其调节结构域都能与MARCKS结合,这表明nPKCδ的激酶结构域和调节结构域都参与了与完整MARCKS蛋白的高亲和力相互作用。

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