Flores-Ríos Rodrigo, Quatrini Raquel, Loyola Alejandra
Fundación Ciencia y Vida, Avenida Zañartu 1482, Ñuñoa, Santiago, Chile.
Millennium Nucleus in the Biology of Intestinal Microbiota, Santiago, Chile.
Comput Struct Biotechnol J. 2019 Jun 14;17:746-756. doi: 10.1016/j.csbj.2019.06.010. eCollection 2019.
Mobile Genetic Elements (MGEs) are mosaics of functional gene modules of diverse evolutionary origin and are generally divergent from the hosts´ genetic background. Existing biases in base composition and codon usage of these elements` genes impose transcription and translation limitations that may affect the physical and regulatory integration of MGEs in new hosts. Stable appropriation of the foreign DNA depends on a number of host factors among which are the Nucleoid-Associated Proteins (NAPs). These small, basic, highly abundant proteins bind and bend DNA, altering its topology and folding, thereby affecting all known essential DNA metabolism related processes. Both chromosomally- (endogenous) and MGE- (foreign) encoded NAPs have been shown to exist in bacteria. While the role of host-encoded NAPs in xenogeneic silencing of both episomal (plasmids) and integrative MGEs (pathogenicity islands and prophages) is well acknowledged, less is known about the role of MGE-encoded NAPs in the foreign elements biology or their influence on the host's chromosome expression dynamics. Here we review existing literature on the topic, present examples on the positive and negative effects that endogenous and foreign NAPs exert on global transcriptional gene expression, MGE integrative and excisive recombination dynamics, persistence and transfer to suitable hosts and discuss the nature and relevance of synergistic and antagonizing higher order interactions between diverse types of NAPs.
移动遗传元件(MGEs)是由不同进化起源的功能基因模块组成的嵌合体,通常与宿主的遗传背景不同。这些元件基因在碱基组成和密码子使用上存在的现有偏差会施加转录和翻译限制,这可能会影响MGEs在新宿主中的物理整合和调控整合。外源DNA的稳定获取取决于许多宿主因素,其中包括类核相关蛋白(NAPs)。这些小的、碱性的、高度丰富的蛋白质结合并弯曲DNA,改变其拓扑结构和折叠,从而影响所有已知的与DNA代谢相关的基本过程。已证明细菌中同时存在染色体编码(内源性)和MGE编码(外源性)的NAPs。虽然宿主编码的NAPs在游离(质粒)和整合MGEs(致病岛和原噬菌体)的异源沉默中的作用已得到充分认识,但关于MGE编码的NAPs在异源元件生物学中的作用或它们对宿主染色体表达动态的影响知之甚少。在这里,我们回顾了关于该主题的现有文献,列举了内源性和外源性NAPs对全局转录基因表达、MGE整合和切除重组动态、持久性以及向合适宿主转移的正负效应的例子,并讨论了不同类型NAPs之间协同和拮抗高阶相互作用的性质和相关性。