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人类盘状大蛋白中PDZ结构域的模块化组织提示了一种将PDZ结构域结合蛋白与ATP及膜细胞骨架偶联的机制。

Modular organization of the PDZ domains in the human discs-large protein suggests a mechanism for coupling PDZ domain-binding proteins to ATP and the membrane cytoskeleton.

作者信息

Marfatia S M, Morais Cabral J H, Lin L, Hough C, Bryant P J, Stolz L, Chishti A H

机构信息

Department of Biomedical Research, St. Elizabeth's Medical Center, Tufts University of Medicine, Boston, Massachusetts 02135, USA.

出版信息

J Cell Biol. 1996 Nov;135(3):753-66. doi: 10.1083/jcb.135.3.753.

Abstract

The human homologue (hDIg) of the Drosophila discs-large tumor suppressor (DIg) is a multidomain protein consisting of a carboxyl-terminal guanylate kinase-like domain, an SH3 domain, and three slightly divergent copies of the PDZ (DHR/GLGF) domain. Here have examined the structural organization of the three PDZ domains of hDIg using a combination of protease digestion and in vitro binding measurements. Our results show that the PDZ domains are organized into two conformationally stable modules one (PDZ, consisting of PDZ domains 1 and 2, and the other (PDZ) corresponding to the third PDZ domain. Using amino acid sequencing and mass spectrometry, we determined the boundaries of the PDZ domains after digestion with endoproteinase Asp-N, trypsin, and alpha-chymotrypsin. The purified PDZ1+2, but not the PDZ3 domain, contains a high affinity binding site for the cytoplasmic domain of Shaker-type K+ channels. Similarly, we demonstrate that the PDZ1+2 domain can also specifically bind to ATP. Furthermore, we provide evidence for an in vivo interaction between hDIg and protein 4.1 and show that the hDIg protein contains a single high affinity protein 4.1-binding site that is not located within the PDZ domains. The results suggest a mechanism by which PDZ domain-binding proteins may be coupled to ATP and the membrane cytoskeleton via hDlg.

摘要

果蝇盘大肿瘤抑制因子(DIg)的人类同源物(hDIg)是一种多结构域蛋白,由一个羧基末端鸟苷酸激酶样结构域、一个SH3结构域和三个略有差异的PDZ(DHR/GLGF)结构域拷贝组成。在此,我们结合蛋白酶消化和体外结合测量,研究了hDIg的三个PDZ结构域的结构组织。我们的结果表明,PDZ结构域被组织成两个构象稳定的模块,一个(PDZ₁₂)由PDZ结构域1和2组成,另一个(PDZ₃)对应于第三个PDZ结构域。通过氨基酸测序和质谱分析,我们确定了用天冬氨酸内肽酶N、胰蛋白酶和α-胰凝乳蛋白酶消化后PDZ结构域的边界。纯化的PDZ₁₂结构域而非PDZ₃结构域,含有一个与震颤型钾通道胞质结构域的高亲和力结合位点。同样,我们证明PDZ₁₂结构域也能特异性结合ATP。此外,我们提供了hDIg与蛋白4.1在体内相互作用的证据,并表明hDIg蛋白含有一个单一的高亲和力蛋白4.1结合位点,该位点不在PDZ结构域内。这些结果提示了一种机制,通过该机制,PDZ结构域结合蛋白可能通过hDlg与ATP和膜细胞骨架偶联。

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