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PacBio Amplicon Sequencing Method To Measure Pilin Antigenic Variation Frequencies of Neisseria gonorrhoeae

机译:PacBio扩增子测序方法测量淋病奈瑟氏菌的Pilin抗原变异频率

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Gene diversification is a common mechanism pathogens use to alter surface structures to aid in immune avoidance. Neisseria gonorrhoeae uses a gene conversion-based diversification system to alter the primary sequence of the gene encoding the major subunit of the pilus, pilE . Antigenic variation occurs when one of the nonexpressed 19 silent copies donates part of its DNA sequence to pilE . We have developed a method using Pacific Biosciences (PacBio) amplicon sequencing and custom software to determine pilin antigenic variation frequencies. The program analyzes 37 variable regions across the strain FA1090 1-81-S2 pilE gene and can be modified to determine sequence variation from other starting pilE sequences or other diversity generation systems. Using this method, we measured pilin antigenic variation frequencies for various derivatives of strain FA1090 and showed we can also analyze pilin antigenic variation frequencies during macrophage infection. IMPORTANCE Diversity generation systems are used by many unicellular organism to provide subpopulations of cell with different properties that are available when needed. We have developed a method using the PacBio DNA sequencing technology and a custom computer program to analyze the pilin antigenic variation system of the organism that is the sole cause of the sexually transmitted infection, gonorrhea.
机译:基因多样化是病原体用来改变表面结构以帮助避免免疫的常见机制。淋病奈瑟氏球菌使用基于基因转化的多样化系统来改变编码菌毛主要亚基pilE的基因的一级序列。当未表达的19个沉默拷贝之一将其DNA序列的一部分捐赠给pilE时,就会发生抗原变异。我们开发了一种使用Pacific Biosciences(PacBio)扩增子测序和定制软件来确定菌毛蛋白抗原变异频率的方法。该程序分析了菌株FA1090 1-81-S2 pilE基因的37个可变区,可以对其进行修改,以确定来自其他起始pilE序列或其他多样性生成系统的序列变异。使用这种方法,我们测量了菌株FA1090的各种衍生物的菌毛抗原变化频率,并表明我们还可以在巨噬细胞感染期间分析菌毛抗原变化频率。重要信息许多单细胞生物都使用多样性生成系统来提供具有不同属性的细胞亚群,这些亚群可在需要时使用。我们已经开发出一种使用PacBio DNA测序技术和自定义计算机程序的方法来分析生物的菌毛蛋白抗原变异系统,这是性传播感染,淋病的唯一原因。

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