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缺乏氨基末端67个残基或羧基末端27个残基的结蛋白衍生物形成中间丝的能力。

Intermediate filament forming ability of desmin derivatives lacking either the amino-terminal 67 or the carboxy-terminal 27 residues.

作者信息

Kaufmann E, Weber K, Geisler N

出版信息

J Mol Biol. 1985 Oct 20;185(4):733-42. doi: 10.1016/0022-2836(85)90058-0.

Abstract

Amino acid sequence data and results from limited proteolytic digestion have been used to define the three-domain structure of intermediate filament proteins. A centrally located highly alpha-helical domain of about 310 residues well-conserved in sequence principles and length is flanked by the highly variable sequences of the non-alpha-helical headpiece and tailpiece. A direct involvement in filament formation of one or both terminal domains was previously proposed for desmin since chymotryptic removal of head and tailpiece provided a derivative unable to form filaments. In order to evaluate directly the importance of these regions we have prepared desmin derivatives lacking either the amino-terminal 67 (T-desmin) or carboxy-terminal 27 residues (L-desmin). Whereas the latter derivative is fully polymerization-competent the fragment lacking only the basic and arginine-rich headpiece cannot form filaments on its own and remains in a protofilamentous stage. These structures of T-desmin are not incorporated into filaments when mixed with protofilaments of desmin. If, however, the two proteins are mixed in 7 M-urea subsequent dialysis provides morphologically normal filaments containing T-desmin. The results suggest that at least certain hybrid protofilaments containing less than four headpieces are accepted in the filament. The removal of the 27 carboxy-terminal residues in L-desmin, although not interfering with filament formation, leads to a change in surface since filaments show lateral aggregation at 170 mM but not at 50 mM salt. The results are discussed in relation to current models of intermediate filament structure.

摘要

氨基酸序列数据和有限蛋白酶解消化的结果已被用于确定中间丝蛋白的三结构域结构。一个位于中央的高度α螺旋结构域,约310个残基,在序列原则和长度上高度保守,两侧是非α螺旋头部和尾部的高度可变序列。由于胰凝乳蛋白酶去除头部和尾部后得到的衍生物无法形成丝,因此之前有人提出结蛋白的一个或两个末端结构域直接参与丝的形成。为了直接评估这些区域的重要性,我们制备了缺少氨基末端67个残基(T-结蛋白)或羧基末端27个残基(L-结蛋白)的结蛋白衍生物。后者衍生物具有完全的聚合能力,而仅缺少富含碱性和精氨酸的头部的片段自身不能形成丝,而是处于原丝阶段。当与结蛋白的原丝混合时,T-结蛋白的这些结构不会并入丝中。然而,如果将这两种蛋白质在7M尿素中混合,随后透析可得到含有T-结蛋白的形态正常的丝。结果表明,至少某些含有少于四个头部的杂合原丝被丝所接受。L-结蛋白中27个羧基末端残基的去除虽然不干扰丝的形成,但会导致表面变化,因为丝在170mM盐浓度下会发生侧向聚集,而在50mM盐浓度下则不会。本文结合当前的中间丝结构模型对这些结果进行了讨论。

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