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确定BRMS1转移抑制因子中细胞定位的必需序列。

Identification of essential sequences for cellular localization in BRMS1 metastasis suppressor.

作者信息

Rivera José, Megías Diego, Navas Carolina, Bravo Jerónimo

机构信息

Signal Transduction Group, Centro Nacional de Investigaciones Oncológicas, Madrid, Spain.

出版信息

PLoS One. 2009 Jul 30;4(7):e6433. doi: 10.1371/journal.pone.0006433.

Abstract

BACKGROUND

Breast cancer metastasis suppressor 1 (BRMS1) reduces the number and the size of secondary tumours in a mouse model without affecting the growth of the primary foci upon its re-expression. Knockdown of BRMS1 expression associates with metastasis. The molecular details on BRMS1 mechanism of action include its ability to function as a transcriptional co-repressor and consistently BRMS1 has been described as a predominantly nuclear protein. Since cellular distribution could represent a potential mechanism of regulation, we wanted to characterize BRMS1 sequence motifs that might regulate its cellular distribution. According to its amino acids sequence, BRMS1 contain two putative nuclear localization signals, however none of them has been proved to work so far.

METHODOLOGY/PRINCIPAL FINDINGS: By using well known in vivo assays to detect both nuclear import and export signal, we have characterized, in the present study, one functional nuclear localisation signal as necessary and sufficient to promote nuclear transport. Additionally, the outcome of a directed yeast two-hybrid assay identify importin alpha6 as a specific partner of BRMS1 thus speculating that BRMS1 nuclear import could be specifically mediated by the reported nuclear transporter. Besides, the combination of a computational searching approach along the utilization of a nuclear export assay, identified a functional motif within the BRMS1 sequence responsible for its nuclear export, that resulted not affected by the highly specific CRM1 inhibitor Leptomycin-B. Interspecies heterokaryon assay demonstrate the capability of BRMS1 to shuttle between the nuclear and cytosolic compartments

CONCLUSIONS/SIGNIFICANCE: Our results show for the first time that BRMS1 contains both nuclear import and export signals enabling its nucleo-cytoplasmic shuttling. These findings contributes new data for the understanding of the BRMS1 functions and allow us to speculate that this phenomenon could represent a novel mechanism for regulating the activity of BRMS1 or its associated cytosolic partners.

摘要

背景

乳腺癌转移抑制因子1(BRMS1)在小鼠模型中可减少继发性肿瘤的数量和大小,而重新表达时不影响原发性病灶的生长。BRMS1表达的敲低与转移相关。BRMS1作用机制的分子细节包括其作为转录共抑制因子的功能,并且一直以来BRMS1被描述为主要定位于细胞核的蛋白。由于细胞分布可能代表一种潜在的调控机制,我们想要鉴定可能调控其细胞分布的BRMS1序列基序。根据其氨基酸序列,BRMS1含有两个假定的核定位信号,但到目前为止尚未证实其中任何一个起作用。

方法/主要发现:通过使用众所周知的体内试验来检测核输入和输出信号,在本研究中,我们鉴定出一个功能性核定位信号,它对于促进核转运是必要且充分的。此外,定向酵母双杂交试验的结果确定输入蛋白α6是BRMS1的特异性伴侣,因此推测BRMS1的核输入可能由报道的核转运体特异性介导。此外,结合计算搜索方法和核输出试验,在BRMS1序列中鉴定出一个负责其核输出的功能性基序,结果表明它不受高度特异性的CRM1抑制剂Leptomycin - B的影响。种间异核体试验证明BRMS1能够在细胞核和细胞质区室之间穿梭。

结论/意义:我们的结果首次表明BRMS1同时含有核输入和输出信号,使其能够进行核质穿梭。这些发现为理解BRMS1的功能提供了新的数据,并使我们推测这种现象可能代表一种调节BRMS1或其相关细胞质伴侣活性的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b55/2713406/f6e4f6773690/pone.0006433.g001.jpg

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