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小鼠生精细胞中核自体抗原精子蛋白(NASP)与热休克蛋白90(HSP90)的关联:对ATP酶活性的刺激以及连接组蛋白向细胞核的转运

Association of NASP with HSP90 in mouse spermatogenic cells: stimulation of ATPase activity and transport of linker histones into nuclei.

作者信息

Alekseev Oleg M, Widgren Esther E, Richardson Richard T, O'Rand Michael G

机构信息

Department of Cell and Developmental Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-7090.

出版信息

J Biol Chem. 2005 Jan 28;280(4):2904-11. doi: 10.1074/jbc.M410397200. Epub 2004 Nov 8.

Abstract

NASP (nuclear autoantigenic sperm protein) is a linker histone-binding protein found in all dividing cells that is regulated by the cell cycle (Richardson, R. T., Batova, I. N., Widgren, E. E., Zheng, L. X., Whitfield, M., Marzluff, W. F., and O'Rand, M. G. (2000) J. Biol. Chem. 275, 30378-30386), and in the nucleus linker histones not bound to DNA are bound to NASP (Alekseev, O. M., Bencic, D. C., Richardson R. T., Widgren E. E., and O'Rand, M. G. (2003) J. Biol. Chem. 278, 8846-8852). In mouse spermatogenic cells tNASP binds the testis-specific linker histone H1t. Utilizing a cross-linker, 3,3'-dithiobissulfosuccinimidyl propionate, and mass spectrometry, we have identified HSP90 as a testis/embryo form of NASP (tNASP)-binding partner. In vitro assays demonstrate that the association of tNASP with HSP90 stimulated the ATPase activity of HSP90 and increased the binding of H1t to tNASP. HSP90 and tNASP are present in both nuclear and cytoplasmic fractions of mouse spermatogenic cells; however, HSP90 bound to NASP only in the cytoplasm. In vitro nuclear import assays on permeabilized HeLa cells demonstrate that tNASP, in the absence of any other cytoplasmic factors, transports linker histones into the nucleus in an energy and nuclear localization signal-dependent manner. Consequently we hypothesize that in the cytoplasm linker histones are bound to a complex containing NASP and HSP90 whose ATPase activity is stimulated by binding NASP. NASP-H1 is subsequently released from the complex and translocates to the nucleus where the H1 is released for binding to the DNA.

摘要

核自身抗原性精子蛋白(NASP)是一种在所有分裂细胞中发现的连接组蛋白结合蛋白,受细胞周期调控(理查森,R.T.,巴托娃,I.N.,维德格伦,E.E.,郑,L.X.,惠特菲尔德,M.,马兹洛夫,W.F.,和奥兰德,M.G.(2000年)《生物化学杂志》275卷,30378 - 30386页),并且在细胞核中,未与DNA结合的连接组蛋白与NASP结合(阿列克谢耶夫,O.M.,本西克,D.C.,理查森,R.T.,维德格伦,E.E.,和奥兰德,M.G.(2003年)《生物化学杂志》278卷,8846 - 8852页)。在小鼠生精细胞中,tNASP与睾丸特异性连接组蛋白H1t结合。利用交联剂3,3'-二硫代双(磺基琥珀酰亚胺基)丙酸酯和质谱分析,我们鉴定出热休克蛋白90(HSP90)是核自身抗原性精子蛋白(tNASP)的睾丸/胚胎形式的结合伴侣。体外实验表明,tNASP与HSP90的结合刺激了HSP90的ATP酶活性,并增加了H1t与tNASP的结合。HSP90和tNASP存在于小鼠生精细胞的细胞核和细胞质组分中;然而,HSP90仅在细胞质中与NASP结合。对通透的HeLa细胞进行的体外核输入实验表明,在没有任何其他细胞质因子的情况下,tNASP以能量和核定位信号依赖的方式将连接组蛋白转运到细胞核中。因此,我们推测在细胞质中,连接组蛋白与包含NASP和HSP90的复合物结合,其ATP酶活性通过结合NASP而被刺激。随后,NASP - H1从复合物中释放并转运到细胞核,在那里H1被释放以与DNA结合。

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