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人类精子中假定的肌酸激酶M同工型被鉴定为70千道尔顿的热休克蛋白HspA2。

Putative creatine kinase M-isoform in human sperm is identifiedas the 70-kilodalton heat shock protein HspA2.

作者信息

Huszar G, Stone K, Dix D, Vigue L

机构信息

The Sperm Physiology Laboratory, Department of Obstetrics and Gynecology, W.M. Keck Foundation Biotechnology Resource Laboratory, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

Biol Reprod. 2000 Sep;63(3):925-32. doi: 10.1095/biolreprod63.3.925.

Abstract

We previously described a putative creatine kinase M isoform in human sperm that is developmentally regulated and expressed during late spermiogenesis, simultaneous with cytoplasmic extrusion. We have now identified this protein as the testis-expressed 70-kDa heat shock protein chaperone known as HspA2 (the human homologue of mouse Hsp70-2). We have isolated and characterized HspA2 (formerly CK-M) by amino acid sequencing and have localized it by immunocytochemistry to spermatocytes at low levels, to spermatids, and in the tail of mature sperm. The specificity of the CK-M/HspA2 antiserum to HspA2 was demonstrated on immunoblots of one- and two-dimensional SDS-PAGE. In agreement with our earlier biochemical data, immunocytochemistry of testicular tissue indicated that HspA2 is selectively expressed in mature spermatids and in sperm about to be released in the seminiferous tubuli. The identity of HspA2 has been further confirmed by cross-absorption of the mouse HSP70-2 antibody by the HspA2/CK-M fraction, and by identical immunostaining patterns of human testicular tissue using either the anti-CK-M/HspA2 or an anti-mouse Hsp70-2 antisera. During spermiogenesis, both cytoplasmic extrusion and plasma membrane remodeling, which facilitate the formation of the zona pellucida binding site, involve major intrasperm protein transport, which may be chaperoned by HspA2. Accordingly, in immature human sperm, which fail to express HspA2, there is cytoplasmic retention and lack of zona pellucida binding. The present findings provide the biological rationale for the role of the human HspA2 as an objective biochemical marker of sperm function and male fertility, which we have established in earlier clinical studies.

摘要

我们之前描述过人类精子中一种假定的肌酸激酶M同工型,它在精子发生后期受到发育调控并表达,与细胞质挤出同时发生。我们现在已确定该蛋白为睾丸表达的70 kDa热休克蛋白伴侣,即HspA2(小鼠Hsp70-2的人类同源物)。我们通过氨基酸测序分离并鉴定了HspA2(以前称为CK-M),并通过免疫细胞化学将其定位到低水平的精母细胞、精子细胞以及成熟精子的尾部。在一维和二维SDS-PAGE免疫印迹上证实了CK-M/HspA2抗血清对HspA2的特异性。与我们早期的生化数据一致,睾丸组织的免疫细胞化学表明,HspA2在成熟精子细胞和即将在曲细精管中释放的精子中选择性表达。HspA2/CK-M组分对小鼠HSP70-2抗体的交叉吸收,以及使用抗CK-M/HspA2或抗小鼠Hsp70-2抗血清对人类睾丸组织进行的相同免疫染色模式,进一步证实了HspA2的身份。在精子发生过程中,细胞质挤出和质膜重塑有助于透明带结合位点的形成,这两者都涉及精子内主要的蛋白质运输,可能由HspA2陪伴。因此,在未表达HspA2 的未成熟人类精子中,存在细胞质滞留且缺乏透明带结合。本研究结果为人类HspA2作为精子功能和男性生育力的客观生化标志物的作用提供了生物学依据,这是我们在早期临床研究中确立的。

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