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环磷酸鸟苷磷酸二酯酶γ亚基的聚阳离子区域内对与转导素α亚基相互作用至关重要的残基。通过内源性ADP-核糖基化和定点诱变进行鉴定。

Residues within the polycationic region of cGMP phosphodiesterase gamma subunit crucial for the interaction with transducin alpha subunit. Identification by endogenous ADP-ribosylation and site-directed mutagenesis.

作者信息

Bondarenko V A, Desai M, Dua S, Yamazaki M, Amin R H, Yousif K K, Kinumi T, Ohashi M, Komori N, Matsumoto H, Jackson K W, Hayashi F, Usukura J, Lipkin V M, Yamazaki A

机构信息

Kresge Eye Institute, Wayne State University, School of Medicine, Detroit, Michigan 48201, USA.

出版信息

J Biol Chem. 1997 Jun 20;272(25):15856-64. doi: 10.1074/jbc.272.25.15856.

Abstract

Interaction between the gamma subunit (Pgamma) of cGMP phosphodiesterase and the alpha subunit (Talpha) of transducin is a key step for the regulation of cGMP phosphodiesterase in retinal rod outer segments. Here we have utilized a combination of specific modification by an endogenous enzyme and site-directed mutagenesis of the Pgamma polycationic region to identify residues required for the interaction with Talpha. Pgamma, free or complexed with the alphabeta subunit (Palphabeta) of cGMP phosphodiesterase, was specifically radiolabeled by prewashed rod membranes in the presence of [adenylate-32P]NAD. Identification of ADP-ribose in the radiolabeled Pgamma and radiolabeling of arginine-replaced mutant forms of Pgamma indicate that both arginine 33 and arginine 36 are similarly ADP-ribosylated by endogenous ADP-ribosyltransferase, but only one arginine is modified at a time. Pgamma complexed with Talpha (both GTP- and GDP-bound forms) was not ADP-ribosylated; however, agmatine, which cannot interact with Talpha, was ADP-ribosylated in the presence of Talpha, suggesting that a Pgamma domain containing these arginines is masked by Talpha. A Pgamma mutant (R33,36K), as well as wild type Pgamma, inhibited both GTP hydrolysis of Talpha and GTP binding to Talpha. Moreover, GTP-bound Talpha activated Palphabeta that had been inhibited by R33,36K. However, another Pgamma mutant (R33,36L) could not inhibit these Talpha functions. In addition, GTP-bound Talpha could not activate Palphabeta inhibited by R33,36L. These results indicate that a Pgamma domain containing these arginines is required for its interaction with Talpha, but not with Palphabeta, and that positive charges in these arginines are crucial for the interaction.

摘要

环鸟苷酸磷酸二酯酶的γ亚基(Pγ)与转导素的α亚基(Tα)之间的相互作用是视网膜杆状细胞外段中环鸟苷酸磷酸二酯酶调节的关键步骤。在此,我们利用内源性酶的特异性修饰与Pγ聚阳离子区域的定点诱变相结合的方法,来确定与Tα相互作用所需的残基。游离的或与环鸟苷酸磷酸二酯酶的αβ亚基(Pαβ)复合的Pγ,在[腺苷酸 - 32P]NAD存在下被预洗涤的杆状细胞膜特异性放射性标记。在放射性标记的Pγ中鉴定出ADP - 核糖以及Pγ精氨酸取代突变体形式的放射性标记表明,精氨酸33和精氨酸36同样被内源性ADP - 核糖基转移酶进行ADP - 核糖基化,但一次仅修饰一个精氨酸。与Tα复合的Pγ(GTP结合和GDP结合形式)未被ADP - 核糖基化;然而,不能与Tα相互作用的胍丁胺在Tα存在下被ADP - 核糖基化,这表明包含这些精氨酸的Pγ结构域被Tα掩盖。Pγ突变体(R33,36K)以及野生型Pγ均抑制Tα的GTP水解和GTP与Tα的结合。此外,结合GTP的Tα激活了被R33,36K抑制的Pαβ。然而,另一个Pγ突变体(R33,36L)不能抑制这些Tα功能。另外,结合GTP的Tα不能激活被R33,36L抑制的Pαβ。这些结果表明,包含这些精氨酸的Pγ结构域是其与Tα相互作用所必需,但与Pαβ相互作用则不需要,并且这些精氨酸中的正电荷对于这种相互作用至关重要。

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