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着丝粒蛋白G:一种与α-1卫星DNA亚家族相关的新型着丝粒蛋白。

CENP-G: a new centromeric protein that is associated with the alpha-1 satellite DNA subfamily.

作者信息

He D, Zeng C, Woods K, Zhong L, Turner D, Busch R K, Brinkley B R, Busch H

机构信息

Department of Cell Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Chromosoma. 1998 Jun;107(3):189-97. doi: 10.1007/s004120050296.

Abstract

A new constitutive centromere-specific protein (CENP) has been identified as a result of its recognition as an autoantigen by serum from a patient with gastric antral vascular ectasia disease. Conventional immunoblotting and two-dimensional double blotting with both this antiserum and a known anti-centromere antiserum showed that this antiserum predominantly recognized a Mr 95,000 protein that is different from all known CENPs. We have named this new protein CENP-G. This protein was detected at the centromeric region throughout the cell cycle. In mitosis, it was restricted to the kinetochore inner plate as shown by immunogold labeling and electron microscopy. The centromeres of some human chromosomes are known to contain two subfamilies of alpha-satellite DNA. Using immunofluorescence combined with fluorescent in situ hybridization with subfamily-specific DNA probes, we revealed that CENP-G was specifically associated with one of the subfamilies, which we have named alpha-1, but not the other. The localization and the alpha-1-specific association suggested that CENP-G may play a role in kinetochore organization and function. Like CENP-B and C, but unlike CENP-A, this protein remained with the nuclear matrix after intensive extraction. While CENP-B is absent from the human Y chromosome, the existence of CENP-G on the Y chromosome has been proven by immunofluorescence and whole chromosome painting. CENP-G was also detected in CHO, Indian muntjac and Chinese muntjac cells, suggesting that it is conserved in evolution.

摘要

一种新的组成型着丝粒特异性蛋白(CENP)已被鉴定出来,这是因为它被一名患有胃窦血管扩张症患者的血清识别为自身抗原。用这种抗血清和一种已知的抗着丝粒抗血清进行的传统免疫印迹和二维双印迹显示,这种抗血清主要识别一种分子量为95,000的蛋白质,它与所有已知的CENP都不同。我们将这种新蛋白质命名为CENP-G。在整个细胞周期中,该蛋白质都在着丝粒区域被检测到。在有丝分裂中,通过免疫金标记和电子显微镜观察表明,它局限于动粒内板。已知一些人类染色体的着丝粒包含α-卫星DNA的两个亚家族。通过免疫荧光结合使用亚家族特异性DNA探针的荧光原位杂交,我们发现CENP-G与其中一个亚家族特异性相关,我们将其命名为α-1,而与另一个亚家族无关。其定位和α-特异性关联表明CENP-G可能在动粒的组织和功能中发挥作用。与CENP-B和C一样,但与CENP-A不同,这种蛋白质在经过强烈提取后仍与核基质结合。虽然人类Y染色体上不存在CENP-B,但通过免疫荧光和全染色体涂染已证明Y染色体上存在CENP-G。在CHO细胞、印度麂和中国麂细胞中也检测到了CENP-G,这表明它在进化过程中是保守的。

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