Traag Bjørn A, van Wezel Gilles P
Microbial Development, Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Antonie Van Leeuwenhoek. 2008 Jun;94(1):85-97. doi: 10.1007/s10482-008-9225-3. Epub 2008 Feb 14.
Several unique protein families have been identified that play a role in the control of developmental cell division in streptomycetes. The SsgA-like proteins or SALPs, of which streptomycetes typically have at least five paralogues, control specific steps of sporulation-specific cell division in streptomycetes, affecting cell wall-related events such as septum localization and synthesis, thickening of the spore wall and autolytic spore separation. The expression level of SsgA, the best studied SALP, has a rather dramatic effect on septation and on hyphal morphology, which is not only of relevance for our understanding of (developmental) cell division but has also been successfully applied in industrial fermentation, to improve growth and production of filamentous actinomycetes. Recent observations suggest that SsgB most likely is the archetypal SALP, with only SsgB orthologues occurring in all morphologically complex actinomycetes. Here we review 10 years of research on the SsgA-like proteins in actinomycetes and discuss the most interesting regulatory, functional, phylogenetic and applied aspects of this relatively unknown protein family.
已鉴定出几个独特的蛋白质家族,它们在链霉菌发育细胞分裂的控制中发挥作用。链霉菌通常至少有五个旁系同源物的SsgA样蛋白(SALP)控制链霉菌中孢子形成特异性细胞分裂的特定步骤,影响与细胞壁相关的事件,如隔膜定位和合成、孢子壁增厚和自溶孢子分离。研究最深入的SALP——SsgA的表达水平对隔膜形成和菌丝形态有相当显著的影响,这不仅与我们对(发育)细胞分裂的理解相关,而且已成功应用于工业发酵,以改善丝状放线菌的生长和生产。最近的观察表明,SsgB很可能是原型SALP,在所有形态复杂的放线菌中仅存在SsgB直系同源物。在这里,我们回顾了关于放线菌中SsgA样蛋白的十年研究,并讨论了这个相对不为人知的蛋白质家族最有趣的调控、功能、系统发育和应用方面。