期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Kap与Ran-GTP在核浆转运中的作用
1
作者 刘莛 李晓辉 《四川生理科学杂志》 2001年第3期112-113,共2页
生物大分子在胞浆和胞核之间的转运是通过NPC(核孔复合物,nuclear-pore complex) 和转运因子介导的,前者是跨核膜的聚合体,后者包括Kap-α,Kap-β及Kap-β家族中所有与一种被称为Ran的小GTP结合酶发生反应的成员.
关键词 ran-gtp 胞浆 胞核 序列 复合物 细胞质 KAP NPC
下载PDF
日本囊对虾Ran基因的克隆表达与蛋白质GTP结合活性分析 被引量:2
2
作者 韩芳 王志勇 《集美大学学报(自然科学版)》 CAS 2010年第4期241-247,共7页
在日本囊对虾抑制性差减杂交(suppression subtractive hybrid ization,SSH)研究过程中,首次发现一段经同源比较为Ran基因的部分序列,在抗病日本囊对虾中上调表达.为了进一步探索日本囊对虾Ran基因的功能,通过RACE-PCR的方法克隆得到了... 在日本囊对虾抑制性差减杂交(suppression subtractive hybrid ization,SSH)研究过程中,首次发现一段经同源比较为Ran基因的部分序列,在抗病日本囊对虾中上调表达.为了进一步探索日本囊对虾Ran基因的功能,通过RACE-PCR的方法克隆得到了日本囊对虾Ran基因全长共1 441个碱基,其中开放阅读框为645个碱基,共编码215个氨基酸,这是首次在海洋无脊椎动物体内克隆到该基因.还将该基因克隆到原核表达载体PGEX-4T-2中并转化大肠杆菌BL21,37℃下诱导6 h,超声裂解表达菌株,结果表明GST-Ran融合蛋白在大肠杆菌中为可溶性表达,蛋白大小约为50 ku,经纯化得到了纯度大于90%的GST-Ran融合蛋白.随后的GTP结合试验验证了Ran蛋白具有GTP结合活性. 展开更多
关键词 日本囊对虾 Ran基因 RACE—PCR 蛋白表达 GTP活性
下载PDF
Mitosis-specific acetylation tunes Ran effector binding for chromosome segregation 被引量:10
3
作者 Xiaoling Bao Heng Liu +17 位作者 Xing Liu Ke Ruan Yonshui Zhang Zhiyong Zhang Qi Hu Ying Liu Saima Akram Jiahai Zhang Qingguo Gong Wenwen wang Xiao Yuan Jian-Li Lingli Zhao Zhen Dou Ruijun Tian Xuebiao Yao Jihui Wu Yunyu Shi 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2018年第1期18-32,共15页
Stable transmission of genetic information during cell division requires faithful mitotic spindle assembly and chromosome segregation. The Ran GTPase plays a key role in mitotic spindle assembly. However, how the gene... Stable transmission of genetic information during cell division requires faithful mitotic spindle assembly and chromosome segregation. The Ran GTPase plays a key role in mitotic spindle assembly. However, how the generation of a chemical gradient of Ran-GTP at the spindle is coupled to mitotic post-translational modifications has never been characterized. Here, we solved the complex structure of Ran with the nucleotide release factor Mogl and delineated a novel mitosis-specific acetylation-regulated Ran-Mogl interaction dur- ing chromosome segregation. Our structure-guided functional analyses revealed that Mogl compotes with RCCl for Ran binding in a GTP/GDP-dependent manner. Biochemical characterization demonstrated that Mogl-bound Ran prevents RCCl binding and subse- quent GTP loading. Surprisingly, Ran is a bono fide substrate of TIP60, and the acetylation of Lys134 by TIP60 liberates Mogl from Ran binding during mitosis. Importantly, this acetylation-elicited switch of Ran binding to RCC1 promotes high level of Ran-GTP, which is essential for chromosome alignment. These results establish a previously uncharacterized regulatory mechanism in which TIP60 pro- vides a homeostatic control of Ran-GTP level by tuning Ran effector binding for chromosome segregation in mitosis. 展开更多
关键词 ran-gtp Lys134 acetylation TIP60 MITOSIS chromosome segregation NMR
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部