Kardami Elissavet, Dang Xitong, Iacobas Dumitru A, Nickel Barbara E, Jeyaraman Madhumathy, Srisakuldee Wattamon, Makazan Janna, Tanguy Stephane, Spray David C
Institute of Cardiovascular Sciences, University of Manitoba and St Boniface Research Centre, Winnipeg, MAN, Canada.
Prog Biophys Mol Biol. 2007 May-Jun;94(1-2):245-64. doi: 10.1016/j.pbiomolbio.2007.03.009. Epub 2007 Mar 16.
The purpose of this paper is to provide a brief overview of current thinking on the role of connexins, in particular Cx43, in growth regulation, and a more detailed discussion as to potential mechanisms involved with an emphasis on gene expression. While the precise molecular mechanism by which connexins can affect the growth of normal or tumor cells remains elusive, a number of exciting reports have expanded our understanding and are presented in some detail. Thus, we will discuss (Section 2): the role of protein-protein interactions in integrating connexins into multiple signal transduction pathways; phosphorylation at specific sites and reversal of growth inhibition; the role of the carboxy-terminal regulatory domain as a signaling molecule. Some of our latest work on the potential functions of endogenously produced carboxy-terminal fragments of Cx43 are also presented (Section 3). Finally, Section 4 will pay tribute to the rapidly emerging realization that connexins such as Cx43 and Cx32 exert important and extensive effects on gene expression, particularly those genes linked to growth regulation.
本文旨在简要概述目前关于连接蛋白,特别是Cx43在生长调节中的作用的观点,并更详细地讨论其潜在机制,重点是基因表达。虽然连接蛋白影响正常或肿瘤细胞生长的确切分子机制仍不清楚,但一些令人兴奋的报告扩展了我们的理解,并将在文中详细介绍。因此,我们将讨论(第2节):蛋白质-蛋白质相互作用在将连接蛋白整合到多个信号转导途径中的作用;特定位点的磷酸化和生长抑制的逆转;羧基末端调节域作为信号分子的作用。我们还介绍了一些关于内源性产生的Cx43羧基末端片段潜在功能的最新研究成果(第3节)。最后,第4节将探讨一个迅速出现的认识,即Cx43和Cx32等连接蛋白对基因表达,特别是那些与生长调节相关的基因,发挥着重要而广泛的影响。