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Evolution of the Human Ion Channel Set

机译:人类离子通道组的演变

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摘要

Ion channels are intimately involved in virtually every physiological process of consequence in humans. Their importance is underscored by the identification of numerous “channelopathies”, human diseases caused by ion channel mutations. Ion Channels have consequently been viewed as fertile ground for drug discovery and, indeed, they represent one of the largest target classes for current medicines. The future prospects of ion channels as a target class are tied to the functional characterization of the human ion channel set on a genomic scale. The focus of this review is to describe the molecular diversity and conservation of human ion channels. The human genome contains at least 232 genes that encode the pore-forming subunits of plasma membrane ion channels. Comparative genome analysis shows that most human ion channel gene families have their origins in the earliest metazoans but the human genes are largely derived from duplications that took place in the vertebrate lineage. The mouse and human ion channel gene sets are virtually identical, but differ significantly from fish channel sets. Genome comparisons highlight a number of highly conserved channel families that do not yet have specifically defined functional roles in vivo. These channel families are likely to have non-redundant functions in metazoans and represent some of the best new opportunities for channel target prospecting. Furthermore, genome- wide patterns of sequence conservation can now be used to refine strategies for the identification of gene-specific channel probes.
机译:离子通道实际上与人类发生的每个生理过程密切相关。通过识别多种“通道病”(由离子通道突变引起的人类疾病)来强调其重要性。因此,离子通道被认为是药物发现的沃土,事实上,它们代表了当前药物最大的靶标类别之一。离子通道作为目标类别的未来前景与在基因组规模上设置的人类离子通道的功能表征有关。本文的重点是描述人类离子通道的分子多样性和保守性。人类基因组至少包含232个编码质膜离子通道成孔亚基的基因。比较基因组分析表明,大多数人类离子通道基因家族起源于最早的后生动物,但人类基因主要来源于脊椎动物谱系中的重复。小鼠和人类离子通道基因组实际上是相同的,但与鱼通道组显着不同。基因组比较突显了许多高度保守的通道家族,它们在体内还没有明确定义的功能。这些渠道家族很可能在后生动物中具有非冗余功能,并代表了渠道目标勘探的一些最佳新机会。此外,现在可以使用全基因组序列保守模式来完善用于鉴定基因特异性通道探针的策略。

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