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整合素与基质分子在唾液腺细胞黏附、信号传导及基因表达中的作用

Integrins and matrix molecules in salivary gland cell adhesion, signaling, and gene expression.

作者信息

Lafrenie R M, Yamada K M

机构信息

Northeastern Ontario Regional Cancer Centre, Tumour Biology Research, Sudbury, Canada.

出版信息

Ann N Y Acad Sci. 1998 Apr 15;842:42-8. doi: 10.1111/j.1749-6632.1998.tb09630.x.

DOI:10.1111/j.1749-6632.1998.tb09630.x
PMID:9599292
Abstract

Integrins play crucial roles in embryonic and adult cell adhesion, migration, morphogenesis, growth, and differentiation in many cell systems, including human salivary gland cells. Integrins function by binding through their extracellular domain to a specific peptide recognition site in a ligand, and then transmitting information to the cytoplasm by way of their cytoplasmic tails. By this transmembrane signaling process, integrins can mediate assembly of adhesion sites and organization of the actin-containing cytoskeleton by forming supermolecular complexes of cytoskeletal and signaling molecules. The specific steps in the assembly of these complexes as well as novel mechanisms for synergy between integrin and growth factor signaling pathways are still being determined. integrin-mediated interactions also have major effects on gene expression. For example, integrin-mediated adhesion to fibronectin by the HSG salivary gland cell line significantly alters the pattern of proteins synthesized and genes expressed. In fact, at least five transcription factors are activated, and over 30 genes (many of them novel) are found to be induced by such integrin-mediated interactions by salivary gland cells. The roles of integrins, in collaborative interactions with growth factors and signaling pathways, and in the induction of novel genes during salivary gland development, should provide fruitful areas of research for many years.

摘要

整合素在包括人类唾液腺细胞在内的许多细胞系统的胚胎期及成体细胞的黏附、迁移、形态发生、生长和分化过程中发挥着关键作用。整合素的功能是通过其细胞外结构域与配体中的特定肽识别位点结合,然后通过其细胞质尾部将信息传递到细胞质中。通过这种跨膜信号传导过程,整合素可以通过形成细胞骨架和信号分子的超分子复合物来介导黏附位点的组装和含肌动蛋白的细胞骨架的组织。这些复合物组装的具体步骤以及整合素与生长因子信号通路之间协同作用的新机制仍在研究中。整合素介导的相互作用对基因表达也有重大影响。例如,HSG唾液腺细胞系通过整合素介导与纤连蛋白的黏附,会显著改变合成的蛋白质模式和表达的基因。事实上,至少有五种转录因子被激活,并且发现超过30个基因(其中许多是新基因)是由唾液腺细胞这种整合素介导的相互作用诱导产生的。整合素在与生长因子和信号通路的协同相互作用中,以及在唾液腺发育过程中诱导新基因方面所起的作用,将在未来许多年为研究提供丰富的领域。

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