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Genetic Diversity of Potassium Ion Channel Proteins Encoded by Chloroviruses That Infect Chlorella heliozoae

机译:感染小球藻的氯病毒钾离子通道蛋白的遗传多样性

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摘要

Chloroviruses are large, plaque-forming, dsDNA viruses that infect chlorella-like green algae that live in a symbiotic relationship with protists. Chloroviruses have genomes from 290 to 370 kb, and they encode as many as 400 proteins. One interesting feature of chloroviruses is that they encode a potassium ion (K+) channel protein named Kcv. The Kcv protein encoded by SAG chlorovirus ATCV-1 is one of the smallest known functional K+ channel proteins consisting of 82 amino acids. The KcvATCV-1 protein has similarities to the family of two transmembrane domain K+ channel proteins; it consists of two transmembrane α-helixes with a pore region in the middle, making it an ideal model for studying K+ channels. To assess their genetic diversity, kcv genes were sequenced from 103 geographically distinct SAG chlorovirus isolates. Of the 103 kcv genes, there were 42 unique DNA sequences that translated into 26 new Kcv channels. The new predicted Kcv proteins differed from KcvATCV-1 by 1 to 55 amino acids. The most conserved region of the Kcv protein was the filter, the turret and the pore helix were fairly well conserved, and the outer and the inner transmembrane domains of the protein were the most variable. Two of the new predicted channels were shown to be functional K+ channels.
机译:氯病毒很大,斑块形成的DSDNA病毒,可感染与原生物生活在共生关系中的小球藻的绿藻。氯病毒具有290至370kb的基因组,它们编码多达400个蛋白质。氯病毒的一个有趣特征是它们编码名为KCV的钾离子(K +)通道蛋白。由SAG氯病毒ATCV-1编码的KCV蛋白是由82个氨基酸组成的最小已知的功能k +通道蛋白之一。 KCVATCV-1蛋白质与两个跨膜结构域K +通道蛋白家族的相似之处;它由中间的两个跨膜α-螺旋组成,使其成为研究K +通道的理想模型。为了评估它们的遗传多样性,从103个地理上不同的SAG氯病毒分离物中测序KCV基因。在103个KCV基因中,有42种独特的DNA序列,转化为26个新的KCV通道。新的预测KCV蛋白质不同于KCVATCV-1×1至55个氨基酸。 KCV蛋白的最保守的区域是过滤器,炮塔和孔螺旋相当保存,并且蛋白质的外跨膜结构域是最可变的。两个新的预测信道被显示为功能性K +通道。

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