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鉴定Cdc42Hs上与p21激活激酶结合的表面。

Identification of the binding surface on Cdc42Hs for p21-activated kinase.

作者信息

Guo W, Sutcliffe M J, Cerione R A, Oswald R E

机构信息

Department of Molecular Medicine, Cornell University, Ithaca, New York 14853, and Department of Chemistry, Leicester University, Leicester, LE1 7RK, UK.

出版信息

Biochemistry. 1998 Oct 6;37(40):14030-7. doi: 10.1021/bi981352+.

Abstract

The Ras superfamily of GTP-binding proteins is involved in a number of cellular signaling events including, but not limited to, tumorigenesis, intracellular trafficking, and cytoskeletal organization. The Rho subfamily, of which Cdc42Hs is a member, is involved in cell morphogenesis through a GTPase cascade which regulates cytoskeletal changes. Cdc42Hs has been shown to stimulate DNA synthesis as well as to initiate a protein kinase cascade that begins with the activation of the p21-activated serine/threonine kinases (PAKs). We have determined previously the solution structure of Cdc42Hs [Feltham et al. (1997) Biochemistry 36, 8755-8766] using NMR spectroscopy. A minimal-binding domain of 46 amino acids of PAK was identified (PBD46), which binds Cdc42Hs with a KD of approximately 20 nM and inhibits GTP hydrolysis. The binding interface was mapped by producing a fully deuterated sample of 15N-Cdc42Hs bound to PBD46. A 1H,15N-NOESY-HSQC spectrum demonstrated that the binding surface on Cdc42Hs consists of the second beta-strand (beta2) and a portion of the loop between the first alpha-helix (alpha1) and beta2 (switch I). A complex of PBD46 bound to 15N-Cdc42Hs.GMPPCP exhibited extensive chemical shift changes in the 1H,15N-HSQC spectrum. Thus, PBD46 likely produces structural changes in Cdc42Hs which are not limited to the binding interface, consistent with its effects on GTP hydrolysis. These results suggest that the kinase-binding domain on Cdc42Hs is similar to, but more extensive than, the c-Raf-binding domain on the Ras antagonist, Rap1 [Nassar et al. (1995) Nature 375, 554-560)].

摘要

GTP结合蛋白的Ras超家族参与了许多细胞信号转导事件,包括但不限于肿瘤发生、细胞内运输和细胞骨架组织。Rho亚家族(Cdc42Hs是其成员之一)通过调节细胞骨架变化的GTP酶级联反应参与细胞形态发生。已证明Cdc42Hs能刺激DNA合成,并启动一个蛋白激酶级联反应,该反应始于p21激活的丝氨酸/苏氨酸激酶(PAKs)的激活。我们之前已使用核磁共振光谱法确定了Cdc42Hs的溶液结构[费尔瑟姆等人(1997年)《生物化学》36卷,8755 - 8766页]。鉴定出PAK的一个46个氨基酸的最小结合结构域(PBD46),它以约20 nM的解离常数(KD)结合Cdc42Hs并抑制GTP水解。通过制备与PBD46结合的15N - Cdc42Hs的完全氘代样品来绘制结合界面。1H,15N - NOESY - HSQC光谱表明,Cdc42Hs上的结合表面由第二条β链(β2)以及第一条α螺旋(α1)和β2之间的环的一部分(开关I)组成。与15N - Cdc42Hs.GMPPCP结合的PBD46复合物在1H,15N - HSQC光谱中表现出广泛的化学位移变化。因此,PBD46可能会在Cdc42Hs中产生不限于结合界面的结构变化,这与其对GTP水解的影响一致。这些结果表明,Cdc42Hs上的激酶结合结构域与Ras拮抗剂Rap1上的c - Raf结合结构域相似,但更广泛[纳萨尔等人(1995年)《自然》375卷,554 - 560页]。

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