Model system to study classical nuclear export signals.

AAPS PharmSci Pub Date : 2002-01-01 DOI:10.1208/ps040318
Charu Kanwal, Henan Li, Carol S Lim
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引用次数: 21

Abstract

Signal-mediated protein transport through the nuclear pore complex is of considerable interest in the field of molecular pharmaceutics. Nuclear localization signals can be used to target genes/antisense delivery systems to the nucleus. Studying nuclear export is useful in enhancing the expression and the efficiency of action of these therapeutic agents. The mechanism of nuclear import has been well studied and most of the proteins participating in this mechanism have been identified. The subject of nuclear export is still in the initial stages, and there is a considerable amount of uncertainty in this area. Two main export receptors identified so far are Exportin 1 (Crm1) and Calreticulin. Crm1 recognizes certain leucine-rich amino acid sequences in the proteins it exports called classical nuclear export signals. This paper describes a model system to study, identify, and establish these classical nuclear export signals using green fluorescent protein (GFP). Two putative export signals in the human progesterone receptor (PR) and the strongest nuclear export signal known (from mitogen activated protein kinase kinase [MAPKK]) were studied using this model system.

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研究经典核输出信号的模型系统。
信号介导的蛋白质通过核孔复合体转运在分子制药学领域引起了极大的兴趣。核定位信号可用于将基因/反义递送系统定向到细胞核。研究核输出有助于提高这些治疗药物的表达和作用效率。核导入的机制已得到深入研究,参与这一机制的大多数蛋白质也已确定。核输出的研究仍处于起步阶段,在这一领域还存在相当多的不确定性。目前已发现的两种主要的核输出受体是输出蛋白 1(Crm1)和钙网蛋白(Calreticulin)。Crm1 能识别其输出的蛋白质中某些富含亮氨酸的氨基酸序列,这些序列被称为经典核输出信号。本文介绍了一种利用绿色荧光蛋白(GFP)研究、识别和确定这些经典核输出信号的模型系统。利用该模型系统研究了人类黄体酮受体(PR)中的两个假定输出信号和已知最强的核输出信号(来自丝裂原活化蛋白激酶激酶 [MAPKK])。
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