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细胞周期抑制蛋白p21 G蛋白激活蛋白激酶γ-PAK

Cytostatic p21 G protein-activated protein kinase gamma-PAK.

作者信息

Roig J, Traugh J A

机构信息

Department of Biochemistry, University of California, Riverside, Riverside, California 92504, USA.

出版信息

Vitam Horm. 2001;62:167-98. doi: 10.1016/s0083-6729(01)62004-1.

Abstract

The p21-activated protein kinase gamma-PAK, also known as PAK2, has very different properties from the other two highly conserved isoforms of the PAK family, alpha-PAK (PAK1) and beta-PAK (PAK3). gamma-PAK has cytostatic activity, as shown by inhibition of cleavage of early frog embryos following microinjection of gamma-PAK and by inhibition of growth when expressed in mammalian cells. gamma-PAK is activated in response to a variety of stresses including radiation- and chemically-induced DNA damage, hyperosmolarity, addition of sphingosine, serum starvation, and contact inhibition. Activation occurs through at least two signaling pathways, depending on the type of stress, one of which requires phosphoinositide 3-kinase and/or tyrosine kinase activity. During apoptosis gamma-PAK is cleaved by caspase 3 and activated and appears to have a role in the apoptotic response. gamma-PAK is present in the cytosol, associated with the membrane and in secretory granules. A wide variety of substrates have been identified for gamma-PAK. We propose gamma-PAK may be involved in coordinating the stress response, possibly in conjunction with other stress response proteins.

摘要

p21激活蛋白激酶γ-PAK,也称为PAK2,与PAK家族的其他两种高度保守的亚型α-PAK(PAK1)和β-PAK(PAK3)具有非常不同的特性。γ-PAK具有细胞生长抑制活性,显微注射γ-PAK后对早期蛙胚卵裂的抑制以及在哺乳动物细胞中表达时对生长的抑制均表明了这一点。γ-PAK可响应多种应激而被激活,包括辐射和化学诱导的DNA损伤、高渗、鞘氨醇的添加、血清饥饿和接触抑制。根据应激类型的不同,激活至少通过两条信号通路发生,其中一条需要磷酸肌醇3激酶和/或酪氨酸激酶活性。在细胞凋亡过程中,γ-PAK被半胱天冬酶3切割并激活,似乎在细胞凋亡反应中发挥作用。γ-PAK存在于细胞质中,与细胞膜及分泌颗粒相关联。已鉴定出多种γ-PAK的底物。我们认为γ-PAK可能参与协调应激反应,可能与其他应激反应蛋白共同发挥作用。

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