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小鼠解螺旋蛋白-1结构的研究。与胰蛋白酶的DNA结合及可控蛋白水解作用。

Studies on the structure of mouse helix-destabilizing protein-1. DNA binding and controlled proteolysis with trypsin.

作者信息

Planck S R, Wilson S H

出版信息

J Biol Chem. 1980 Dec 10;255(23):11547-56.

PMID:6254973
Abstract

A mouse helix-destabilizing protein (HD protein-1) has been purified and characterized, and controlled tryptic digestion has been used to generate two large fragments of this protein and to study structural changes accompanying DNA binding. HD protein-1, a DNA-binding protein that has higher affinity for single-stranded DNA (ssDNA)-cellulose than for double-stranded DNA (dsDNA)-cellulose and is resistant to a dextran sulfate elution from ssDNA-cellulose, was purified from mouse myeloma by the method described by Herrick and Alberts (Herrick, G., and Alberts, B. M. (1976) J. Biol. Chem. 251, 2124-2132). HD protein-1 was heterogeneous with regard to apparent molecular weight (range of Mr = 24,000 to 33,000), but individual Mr species shared extensive primary structure homology as revealed by tryptic peptide mapping. The predominant species of this protein, Mr = 27,000, was resolved from other species and obtained in nearly homogeneous form by preparative isoelectric focusing. Mouse HD protein-1 was capable of lowering the Tm of poly[d(A-T)] by 25 degrees C, indicating that it is a helix-destabilizing protein. Sedimentation boundary analysis revealed that binding to ssDNA was noncooperative and that the binding site covered about 6 nucleotide residues. There was a 35% increase in the intrinsic tryptophan fluorescence of the protein in the presence of ssDNA, suggesting that structural change accompanies binding. Subcellular localization studies indicated that 75% of mouse HD protein-1 is nuclear, but not chromatin-associated, and primary structure analysis indicated that HD protein-1 is distinct from high mobility group proteins 1 and 2, histones, and P8 protein. Tryptic hydrolysis of HD protein-1 produced discrete, large fragments whose apparent molecular weights ranged from 19,000 to 24,000, and whose relative abundance was changed by the presence of ssDNA during the digestion. Thus, a Mr = 22,000 fragment (22 HDP*) predominated in the absence of ssDNA, and a Mr = 19,000, fragment (19 HDP*) predominated in the presence of ssDNA. Poly(dT) and denatured calf thymus DNA were more effective than were other polynucleotides tested in promoting accumulation of 19 HDP*; (dT)8 was as effective as were longer molecules of (dT)n, but (dT)4 and (dT)6 were much less effective, indicating that the binding site involved in 19 HDP* accumulation covered between 6 and 8 residues of (dT)n. Both 19 HDP* and 22 HDP* have the same COOH-terminal end and the same affinity for ssDNA-cellulose as does the native HD protein-1, indicating that a Mr = 8,000 sequence at the NH2-terminal end of HD protein-1 is not required for binding to ssDNA. Even though 22 HDP* retained the ability to bind to ssDNA, it could not be converted to 19 HDP* by further trypsin digestion.

摘要

一种小鼠解螺旋蛋白(HD蛋白-1)已被纯化和鉴定,通过可控的胰蛋白酶消化产生了该蛋白的两个大片段,并研究了伴随DNA结合的结构变化。HD蛋白-1是一种对单链DNA(ssDNA)-纤维素的亲和力高于双链DNA(dsDNA)-纤维素且能抵抗从ssDNA-纤维素上被硫酸葡聚糖洗脱的DNA结合蛋白,它是按照赫里克和阿尔伯茨所描述的方法(赫里克,G.,和阿尔伯茨,B.M.(1976年)《生物化学杂志》251,2124 - 2132)从小鼠骨髓瘤中纯化得到的。HD蛋白-1在表观分子量方面具有异质性(Mr范围为24,000至33,000),但通过胰蛋白酶肽图谱分析表明,各个Mr物种具有广泛的一级结构同源性。该蛋白的主要物种Mr = 27,000,通过制备性等电聚焦与其他物种分离并以近乎均一的形式获得。小鼠HD蛋白-1能够使聚[d(A - T)]的熔点降低25℃,表明它是一种解螺旋蛋白。沉降边界分析表明,与ssDNA的结合是非协同性的,且结合位点覆盖约6个核苷酸残基。在ssDNA存在的情况下,该蛋白的内在色氨酸荧光增加了35%,表明结合过程伴随结构变化。亚细胞定位研究表明,75%的小鼠HD蛋白-1位于细胞核中,但不与染色质相关,一级结构分析表明HD蛋白-1与高迁移率族蛋白1和2、组蛋白以及P8蛋白不同。HD蛋白-1的胰蛋白酶水解产生了离散的大片段,其表观分子量范围为19,000至24,000,并且在消化过程中,ssDNA的存在改变了它们的相对丰度。因此,在不存在ssDNA时,Mr = 22,000的片段(22 HDP*)占主导,而在存在ssDNA时,Mr = 19,000的片段(19 HDP*)占主导。聚(dT)和变性小牛胸腺DNA在促进19 HDP积累方面比其他测试的多核苷酸更有效;(dT)8与较长的(dT)n分子效果相同,但(dT)4和(dT)6效果要差得多,这表明参与19 HDP积累的结合位点覆盖了(dT)n的6至8个残基。19 HDP和22 HDP都具有与天然HD蛋白-1相同的COOH末端以及对ssDNA-纤维素相同的亲和力,这表明HD蛋白-1的NH2末端的Mr = 8,000序列对于与ssDNA的结合不是必需的。尽管22 HDP保留了与ssDNA结合的能力,但进一步的胰蛋白酶消化不能将其转化为19 HDP

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