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一种高迁移率族蛋白(HMG 17)对乙酰化及对照的HeLa细胞核小体核心染色质结构的影响

The effect of a high mobility group protein (HMG 17) on the structure of acetylated and control core HeLa cell chromatin.

作者信息

Sasi R, Fasman G D

出版信息

Biochim Biophys Acta. 1984 May 15;782(1):55-66. doi: 10.1016/0167-4781(84)90106-4.

Abstract

The effect of binding a high mobility group protein (HMG 17) on the stability and conformation of acetylated and control HeLa high molecular weight core chromatin (stripped of H1 and non-histone chromosomal proteins) was studied by circular dichroism and thermal-denaturation measurements. Previously it had been shown that conformational differences exist between native whole chromatin derived from butyrate-treated (acetylated) and control HeLa cells and that these conformational differences disappear by removing H1 and non-histone chromosomal proteins ( Reczek , P.R., Weissman , D., Huvos , P.E. and Fasman, G.D. (1982) Biochemistry 21, 993-1002). The circular dichroism spectra and the thermal denaturation profiles of control and acetylated core chromatin were found to be similar. The circular dichroism properties of HMG 17 reconstituted highly acetylated and control core chromatin indicated the same alteration of chromatin structure at low ionic strength (1 mM sodium phosphate/0.25 mM EDTA, pH 7.0). The magnitudes of the decrease in ellipticity were proportional to the amount of HMG 17 bound and were found to be the same for both the acetylated and control core chromatin. Thermal denaturation profiles confirmed this change in structure induced by HMG 17 on control and highly acetylated core chromatin. The thermal denaturation profiles, which were resolved into three component transitions, exhibited a shifting of hyperchromicity from the lower melting transitions to the higher melting transitions, with a concomitant rise in Tm, on HMG 17 binding to both control and acetylated chromatin. The natures of the interactions of HMG 17 at higher ionic strength (50 mM NaCl/0.25 mM EDTA/1 mM sodium phosphate, pH 7.0) with acetylated and control core chromatin were slightly different, as measured by circular dichroism; however, a decrease in ellipticity was observed for both samples upon binding of HMG 17. These observations suggest that acetylation coupled with HMG 17 binding to core chromatin does not loosen chromatin structure. HMG 17 binding to control and acetylated core chromatin produces an overall stabilization and compaction of chromatin structure.

摘要

通过圆二色性和热变性测量研究了结合高迁移率族蛋白(HMG 17)对乙酰化和对照HeLa高分子量核心染色质(去除H1和非组蛋白染色体蛋白)的稳定性和构象的影响。此前已经表明,来源于丁酸盐处理(乙酰化)和对照HeLa细胞的天然全染色质之间存在构象差异,并且通过去除H1和非组蛋白染色体蛋白这些构象差异消失(Reczek,P.R.,Weissman,D.,Huvos,P.E.和Fasman,G.D.(1982)生物化学21,993 - 1002)。发现对照和乙酰化核心染色质的圆二色性光谱和热变性曲线相似。HMG 17重构的高度乙酰化和对照核心染色质的圆二色性特性表明在低离子强度(1 mM磷酸钠/0.25 mM EDTA,pH 7.0)下染色质结构有相同的改变。椭圆率降低的幅度与结合的HMG 17的量成比例,并且发现对于乙酰化和对照核心染色质是相同的。热变性曲线证实了HMG 17对对照和高度乙酰化核心染色质诱导的这种结构变化。热变性曲线被解析为三个组分转变,在HMG 17与对照和乙酰化染色质结合时,表现出增色性从较低熔点转变向较高熔点转变的移动,同时熔点升高。通过圆二色性测量,HMG 17在较高离子强度(50 mM NaCl/0.25 mM EDTA/1 mM磷酸钠,pH 7.0)下与乙酰化和对照核心染色质相互作用的性质略有不同;然而,在结合HMG 17时,两个样品都观察到椭圆率降低。这些观察结果表明,乙酰化与HMG 17结合到核心染色质上并不会使染色质结构松弛。HMG 17与对照和乙酰化核心染色质的结合产生染色质结构的整体稳定和压缩。

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