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从嗜热四膜虫中分离的含高迁移率族盒域的新蛋白 HmgB3p 的定位与功能分析。

Localization and functional analysis of HmgB3p, a novel protein containing high-mobility-group-box domain from Tetrahymena thermophila.

机构信息

Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Biotechnology, Shanxi University, Taiyuan, China.

出版信息

Gene. 2013 Sep 10;526(2):87-95. doi: 10.1016/j.gene.2013.05.006. Epub 2013 May 15.

Abstract

The high-mobility-group (HMG)-box domain represents a very versatile protein domain that mediates the DNA-binding of non-sequence-specific and sequence-specific proteins. HMG-box proteins are involved in various nuclear functions, including modulating chromatin structure and genomic stability. In this study, we identified the gene HMGB3 in Tetrahymena thermophila. The predicted HmgB3p contained a single HMG-box, an SK-rich-repeat domain and a neutral phosphorylated C-terminal. HMGB3 was expressed in the growth and starvation stages. Furthermore, HMGB3 showed a higher expression levels during the conjugation stage. HMGB3 knockout strains showed no obvious cytological defects, although initiation of HMGB3 knockout strain mating was delayed and maximum mating was decreased. HA-HmgB3p localized on the micronucleus (MIC) during the vegetative growth and starvation stages. Furthermore, HA-HmgB3p specially decorated the meiotic and mitotic functional MIC during the conjugation stage. Truncated HMGB3 lacking the HMG box domain disappeared from MICs and diffused in the cytoplasm. Overexpressed HmgB3p was abnormally maintained in newly developing macronuclei and affected the viability of progeny. Taken together, these results show that HmgB3p is a germline micronuclear-specific marker protein. It may bind to micronucleus-specific DNA sequences or structures and is likely to have some function specific to micronuclei of T. thermophila.

摘要

高迁移率族(HMG)-盒域代表一种非常通用的蛋白质域,介导非序列特异性和序列特异性蛋白质的 DNA 结合。HMG 盒蛋白参与各种核功能,包括调节染色质结构和基因组稳定性。在这项研究中,我们在嗜热四膜虫中鉴定了 HMGB3 基因。预测的 HmgB3p 含有单个 HMG 盒、富含 SK 的重复结构域和中性磷酸化的 C 末端。HMGB3 在生长和饥饿阶段表达。此外,HMGB3 在接合阶段的表达水平更高。HMGB3 敲除株没有明显的细胞学缺陷,尽管 HMGB3 敲除株的交配起始延迟,最大交配减少。HA-HmgB3p 在营养生长和饥饿阶段定位于微核(MIC)。此外,HA-HmgB3p 在接合阶段专门修饰有丝分裂和减数分裂功能的 MIC。缺少 HMG 盒结构域的截断 HMGB3 从 MIC 消失并扩散到细胞质中。过表达的 HmgB3p 异常保留在新发育的大核中,并影响后代的存活率。总之,这些结果表明 HmgB3p 是生殖系微核特异性标记蛋白。它可能与微核特异性 DNA 序列或结构结合,并且可能在嗜热四膜虫的微核中具有特定功能。

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