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胶质纤维酸性蛋白的无尽故事。

The endless story of the glial fibrillary acidic protein.

作者信息

Chen W J, Liem R K

机构信息

Department of Pathology and Anatomy, Columbia University College of Physicians and Surgeons, New York, NY 10032.

出版信息

J Cell Sci. 1994 Aug;107 ( Pt 8):2299-311. doi: 10.1242/jcs.107.8.2299.

Abstract

All intermediate filament proteins consist of an alpha-helical rod domain flanked by non-helical N-terminal head and C-terminal tail domains. The roles of the non-helical domains of various intermediate filament proteins in the assembly and co-assembly of higher-order filamentous structures have been studied by many groups but with quite contradictory results. Type III intermediate filaments are unique in that they can form homopolymers both in vitro and in vivo. The expression and assembly characteristics of carboxy- and amino-terminal deletion mutants of glial fibrillary acidic protein (GFAP), an astrocyte-specific type III intermediate filament protein, were examined by transient transfections of either vimentin-positive or vimentin-negative variants of human adrenocarcinoma-derived SW13 cell lines. Whereas complete deletion of the C-terminal tail domain of GFAP results in the formation of polymorphic aggregates, both intranuclear and cytoplasmic in self-assembly experiments, efficient co-assembly of these tail-less GFAP mutants with vimentin can be achieved as long as the KLLEGEE sequence at the C-terminal end of the rod domain is preserved. Up to one-fifth of the C-terminal end of the tail domain can be deleted without affecting the capability of GFAP to self-assemble. The highly conserved RDG-containing motif in the tail domain may be important for self-assembly but is not sufficient. The entire head domain seems to be required for self-assembly. All N-terminal deletion mutants of GFAP share the same phenotype of diffuse cytoplasmic staining when expressed in vimentin-negative SW13 cells. Although co-assembly with vimentin can still be achieved with completely head-less GFAP, preservation of some of the head domain greatly enhanced the efficiency. Our results form the basis for further, more detailed mapping of the essential regions in filament assembly of GFAP and other type III IFs.

摘要

所有中间丝蛋白均由一个α-螺旋杆状结构域组成,其两侧为非螺旋的N端头部和C端尾部结构域。许多研究小组对各种中间丝蛋白的非螺旋结构域在高阶丝状结构组装和共组装中的作用进行了研究,但结果却大相径庭。III型中间丝的独特之处在于,它们在体外和体内都能形成同聚物。通过对人肾上腺癌细胞系SW13的波形蛋白阳性或波形蛋白阴性变体进行瞬时转染,研究了星形胶质细胞特异性III型中间丝蛋白胶质纤维酸性蛋白(GFAP)的羧基端和氨基端缺失突变体的表达和组装特性。在自组装实验中,虽然GFAP的C端尾部结构域完全缺失会导致形成核内和胞质内的多形性聚集体,但只要杆状结构域C端的KLLEGEE序列得以保留,这些无尾GFAP突变体就能与波形蛋白有效共组装。尾部结构域C端的五分之一被删除也不会影响GFAP的自组装能力。尾部结构域中高度保守的含RDG基序可能对自组装很重要,但并不充分。似乎整个头部结构域对于自组装都是必需的。当在波形蛋白阴性的SW13细胞中表达时,GFAP的所有N端缺失突变体都具有相同的弥漫性胞质染色表型。虽然完全无头的GFAP仍能与波形蛋白共组装,但保留部分头部结构域能大大提高效率。我们的研究结果为进一步更详细地绘制GFAP和其他III型中间丝在丝状组装中的关键区域奠定了基础。

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