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视网膜母细胞瘤基因产物中的双分型核定位信号及其对生物活性的重要性。

A bipartite nuclear localization signal in the retinoblastoma gene product and its importance for biological activity.

作者信息

Zacksenhaus E, Bremner R, Phillips R A, Gallie B L

机构信息

Division of Immunology and Cancer Research, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Mol Cell Biol. 1993 Aug;13(8):4588-99. doi: 10.1128/mcb.13.8.4588-4599.1993.

Abstract

The retinoblastoma gene product, p110RB1, appears to regulate cell growth by modulating the activities of nuclear transcription factors. The elements that specify the transport of p110RB1 into the nucleus have not yet been explored. We now report the identification of a basic region, KRSAEGGNPPKPLKKLR, in the C terminus of p110RB1, which has sequence similarity to known bipartite nuclear localization signals (NLSs). A two-amino-acid mutation introduced into this putative NLS [to give mutant NLS(NQ)] or deletion of the entire NLS (delta NLS) abrogated exclusive nuclear localization, yielding proteins which were distributed either equally throughout the cell or predominantly in the cytoplasm. A mutant protein [NLS(NQ)/delta 22] containing both the mutated NLS and a deletion of exon 22, previously shown to disrupt the interaction of p110RB1 with several cellular transcription factors and oncoproteins, accumulated only in the cytoplasm. When fused to the C terminus of Escherichia coli beta-galactosidase, the RB1 NLS directed this protein to the nucleus, indicating that the motif is not only necessary but also sufficient for nuclear transport. Neither NLS(NQ) nor delta NLS was hyperphosphorylated in vivo, but both retained their abilities to interact, in vitro, with simian virus 40 large T antigen, adenovirus E1a, and the cellular transcription factor E2F. When transfected at multiple copy number, the NLS mutant alleles displayed reduced biological activity, measured by inhibition of growth of the osteogenic sarcoma cell line Saos-2, which has no wild-type RB1. Naturally occurring mutations and deletions in exon 25 of RB1 which disrupt the NLS may lead to partial or complete inactivation of p110RB1 and may be responsible for some retinoblastoma and other tumors.

摘要

视网膜母细胞瘤基因产物p110RB1似乎通过调节核转录因子的活性来调控细胞生长。尚未对决定p110RB1转运至细胞核的元件进行探索。我们现在报告在p110RB1的C末端鉴定出一个碱性区域KRSAEGGNPPKPLKKLR,其序列与已知的双分型核定位信号(NLSs)相似。引入该假定NLS的两个氨基酸突变[产生突变型NLS(NQ)]或删除整个NLS(ΔNLS)消除了其在细胞核中的特异性定位,产生的蛋白质要么均匀分布于整个细胞,要么主要分布于细胞质中。一种同时含有突变型NLS和外显子22缺失的突变蛋白[NLS(NQ)/Δ22],先前已证明其破坏了p110RB1与几种细胞转录因子和癌蛋白的相互作用,仅在细胞质中积累。当与大肠杆菌β-半乳糖苷酶的C末端融合时,RB1 NLS将该蛋白导向细胞核,表明该基序不仅对核转运是必需的,而且是充分的。NLS(NQ)和ΔNLS在体内均未发生过度磷酸化,但二者在体外均保留了与猿猴病毒40大T抗原、腺病毒E1a和细胞转录因子E2F相互作用的能力。当以多拷贝数转染时,通过抑制骨肉瘤细胞系Saos-2(该细胞系无野生型RB1)的生长来衡量,NLS突变等位基因显示出降低的生物学活性。RB1外显子25中破坏NLS的天然存在的突变和缺失可能导致p110RB1部分或完全失活,并可能是某些视网膜母细胞瘤和其他肿瘤的病因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd48/360081/84f9a7e3da9b/molcellb00020-0146-a.jpg

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