Department of Biology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Curr Opin Microbiol. 2011 Jun;14(3):357-63. doi: 10.1016/j.mib.2011.03.002. Epub 2011 Apr 7.
In both bacteria and Archaea, the biosynthesis of type IV pilus-related structures involves a set of core components, including a prepilin peptidase that specifically processes precursors of pilin-like proteins. Although in silico analyses showed that most sequenced archaeal genomes encode predicted pilins and conserved pilus biosynthesis components, recent in vivo analyses of archaeal pili in genetically tractable crenarchaea and euryarchaea revealed Archaea-specific type IV pilus functions and biosynthesis components. Studies in a variety of archaeal species will reveal which type IV pilus-like structures are common in Archaea and which are limited to certain species within this domain. The insights gleaned from these studies may also elucidate the roles played by these types of structures in adapting to specific environments.
在细菌和古菌中,IV 型菌毛相关结构的生物合成涉及一组核心成分,包括专门处理菌毛样蛋白前体的 prepilin 肽酶。尽管计算机分析表明,大多数测序的古菌基因组编码预测的菌毛和保守的菌毛生物合成成分,但最近在遗传上可操作的泉古菌和广古菌中对古菌菌毛的体内分析揭示了古菌特异性 IV 型菌毛功能和生物合成成分。在各种古菌物种中的研究将揭示哪些 IV 型菌毛样结构在古菌中普遍存在,以及哪些结构仅限于该领域的某些物种。从这些研究中获得的见解也可能阐明这些结构在适应特定环境中所起的作用。