Alba Blesa, Mercedes Sánchez-Costa, José Berenguer
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引用次数: 0
摘要
嗜热菌(Thermus thermophilus)可以通过自然能力和转接(transjugation)获得 DNA,转接机制包括 DNA 分泌(推)和 DNA 内化(拉)两个步骤。在 "拉 "的过程中,接受交配的细胞中需要自然能力装置(NCA)。然而,DNA如何从供体细胞中排出还只是部分已知。据(Blesa等人,2017a)报道,嗜热菌HB27的移动遗传元件ICETh1中编码的推定DNA易位酶TdtA被证明是DNA捐赠所必需的。这种环形六聚体 ATP 酶与膜结合,很可能与尚未知晓的分泌成分相互作用,使 DNA 得以通过膜挤出;因此,我们进行了基因筛选,以确定更多的推定分泌成分。在这里,我们描述了编码名为 PulE 的推定 AAA-ATP 酶的基因 TT_C1844 的突变体不能合成最近描述的抽动运动所需的、由主要 PilA5 绒毛组成的 "狭窄 "4 型绒毛。同时,PulE 突变体在转接过程中也表现出 DNA 捐献缺陷,这表明狭窄纤毛在捐献过程中发挥作用。然而,单个 pilA5 空缺突变体在转接实验中仍可作为 DNA 供体,因此我们得出结论,转接过程中对 PulE 的需要与其在窄纤毛合成和抽动运动中的作用无关。
The PulE ATPase is required for twitching motility and DNA donation during Thermus thermophilus transjugation.
Thermus thermophilus can acquire DNA through natural competence and through transjugation, a mechanism that involves a two-step process of DNA secretion (push) and DNA internalization (pull) between mating cells of related species. The natural competence apparatus (NCA) is required in the recipient mate for the pull step. However, how the DNA exits of the donor cell is only partially known. The putative DNA translocase TdtA, encoded in mobile genetic element ICETh1 of T. thermophilus HB27, was shown to be required for DNA donation as reported by (Blesa et al. 2017a). This ring-shaped hexameric ATPase binds to the membrane and likely interacts with yet unknown secretory components that allow the extrusion of DNA through the membrane; thus, a genetic screening to identify additional putative secretory components was performed. Here, we describe that mutants in gene TT_C1844, which encodes a putative AAA-ATPase named PulE, do not synthesize the recently described "narrow" type 4 pili required for twitching motility and made up of the major PilA5 pilin. Concomitantly, pulE mutants also exhibited DNA donation defects during transjugation, suggesting a role of narrow pili in the donation process. However, single pilA5 null mutants still function as DNA donors in transjugation experiments, so we conclude that the need for PulE in transjugation is independent of its role in narrow pili synthesis and twitching motility.