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Genome-Wide Prediction of the Polymorphic Ser Gene Family in Tetrahymena thermophila Based on Motif Analysis

机译:基于母题分析的嗜热四膜虫多态性Ser基因家族的全基因组预测

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摘要

Even though antigenic variation is employed among parasitic protozoa for host immune evasion, Tetrahymena thermophila, a free-living ciliate, can also change its surface protein antigens. These cysteine-rich glycosylphosphatidylinositol (GPI)-linked surface proteins are encoded by a family of polymorphic Ser genes. Despite the availability of T. thermophila genome, a comprehensive analysis of the Ser family is limited by its high degree of polymorphism. In order to overcome this problem, a new approach was adopted by searching for Ser candidates with common motif sequences, namely length-specific repetitive cysteine pattern and GPI anchor site. The candidate genes were phylogenetically compared with the previously identified Ser genes and classified into subtypes. Ser candidates were often found to be located as tandem arrays of the same subtypes on several chromosomal scaffolds. Certain Ser candidates located in the same chromosomal arrays were transcriptionally expressed at specific T. thermophila developmental stages. These Ser candidates selected by the motif analysis approach can form the foundation for a systematic identification of the entire Ser gene family, which will contribute to the understanding of their function and the basis of T. thermophila antigenic variation.
机译:即使在寄生虫原生动物之间采用抗原变异来逃避宿主免疫,自由生活的纤毛虫嗜热四膜膜虫也可以改变其表面蛋白抗原。这些富含半胱氨酸的糖基磷脂酰肌醇(GPI)连接的表面蛋白由多态性Ser基因家族编码。尽管嗜热链球菌基因组可用,但对Ser家族的全面分析却受到其高度多态性的限制。为了克服这个问题,采用了一种新方法,即搜索具有共同基序序列的Ser候选物,即长度特异性的重复半胱氨酸模式和GPI锚定位点。将候选基因与先前确定的Ser基因进行系统发育比较,并分为亚型。经常发现Ser候选物位于多个​​染色体支架上,是相同亚型的串联阵列。位于特定染色体阵列中的某些Ser候选基因在特定的嗜热毁丝菌发育阶段进行转录表达。通过基序分析方法选择的这些Ser候选物可以构成系统鉴定整个Ser基因家族的基础,这将有助于他们了解其功能和嗜热衣原体抗原变异的基础。

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