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首页> 外文期刊>Journal of bacteriology >Neisseria gonorrhoeae RecQ Helicase HRDC Domains Are Essential for Efficient Binding and Unwinding of the pilE Guanine Quartet Structure Required for Pilin Antigenic Variation
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Neisseria gonorrhoeae RecQ Helicase HRDC Domains Are Essential for Efficient Binding and Unwinding of the pilE Guanine Quartet Structure Required for Pilin Antigenic Variation

机译:淋病奈瑟氏球菌RecQ解旋酶HRDC域对于有效结合和解开Pilin抗原变异所需的pilE鸟嘌呤四方结构必不可少

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The strict human pathogen Neisseria gonorrhoeae utilizes homologous recombination to antigenically vary the pilus, thus evading the host immune response. High-frequency gene conversion reactions between many silent pilin loci and the expressed pilin locus (pilE) allow for numerous pilus variants per strain to be produced from a single strain. For pilin antigenic variation (Av) to occur, a guanine quartet (G4) structure must form upstream of pilE. The RecQ helicase is one of several recombination or repair enzymes required for efficient levels of pilin Av, and RecQ family members have been shown to bind to and unwind G4 structures. Additionally, the vast majority of RecQ helicase family members encode one “helicase and RNase D C-terminal” (HRDC) domain, whereas the N. gonorrhoeae RecQ helicase gene encodes three HRDC domains, which are critical for pilin Av. Here, we confirm that deletion of RecQ HRDC domains 2 and 3 causes a decrease in the frequency of pilin Av comparable to that obtained with a functional knockout. We demonstrate that the N. gonorrhoeae RecQ helicase can bind and unwind the pilE G4 structure. Deletion of the RecQ HRDC domains 2 and 3 resulted in a decrease in G4 structure binding and unwinding. These data suggest that the decrease in pilin Av observed in the RecQ HRDC domain 2 and 3 deletion mutant is a result of the enzyme's inability to efficiently bind and unwind the pilE G4 structure.
机译:严格的人类病原体淋病奈瑟氏球菌利用同源重组抗原性改变菌毛,从而逃避了宿主的免疫反应。许多沉默的菌毛蛋白基因座和表达的菌毛蛋白基因座( pilE )之间的高频基因转化反应,使得从一个菌株产生的每个菌毛都有许多菌毛变体。为了使菌毛蛋白发生抗原变异(Av),必须在 pilE 的上游形成一个鸟嘌呤四重体(G4)结构。 RecQ解旋酶是有效水平的菌毛蛋白Av所需的几种重组或修复酶之一,并且RecQ家族成员已显示与G4结构结合并解旋。此外,绝大多数RecQ解旋酶家族成员编码一个“解旋酶和RNase D C末端”(HRDC)域,而淋病奈瑟氏球菌RecQ解旋酶基因编码三个HRDC域,这对于菌毛Av至关重要。在这里,我们确认,RecQ HRDC域2和3的删除会导致菌毛蛋白Av的频率下降,与功能性敲除所获得的频率相当。我们证明淋病奈瑟氏球菌RecQ解旋酶可以结合并解开 pilE G4结构。 RecQ HRDC域2和3的删除导致G4结构结合和展开的减少。这些数据表明在RecQ HRDC结构域2和3缺失突变体中观察到的菌毛蛋白Av降低是该酶无法有效结合和解开 pilE G4结构的结果。

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