Pathways for the penetration of enteroinvasive Yersinia into mammalian cells.

Molecular biology & medicine Pub Date : 1990-02-01
R R Isberg
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Abstract

For many bacterial species, entry into mammalian cells is an important step toward establishing an infectious disease. Genetic and molecular techniques have revealed many important features of the entry process. As an example of this approach, the enteric pathogen Yersinia pseudotuberculosis has been used as a model system for bacterial penetration. This analysis has uncovered at least three different pathways for entry of the microorganism into cultured mammalian cells. These pathways differ in regards to their tissue specificities as well as the regulatory signals that control their expression. One of these pathways, promoted by the Y. pseudotuberculosis outer membrane protein invasin, has been studied in detail. This single factor is sufficient to promote entry of inert particles by binding multiple integrin receptors during cellular uptake. The significance of multiple pathways for entry as well as the binding of multiple receptors is discussed.

肠侵入性耶尔森菌进入哺乳动物细胞的途径。
对许多细菌物种来说,进入哺乳动物细胞是形成传染病的重要一步。遗传和分子技术已经揭示了进入过程的许多重要特征。作为这种方法的一个例子,肠道病原体假结核耶尔森菌已被用作细菌渗透的模型系统。这项分析揭示了微生物进入培养的哺乳动物细胞的至少三种不同途径。这些途径在其组织特异性以及控制其表达的调节信号方面有所不同。其中一条由假结核杆菌外膜蛋白侵入所促进的途径已被详细研究。在细胞摄取过程中,这一单一因素足以通过结合多个整合素受体来促进惰性颗粒的进入。讨论了多种进入途径以及多种受体结合的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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