首页> 外文期刊>Journal of pharmacological sciences. >Derived (mutated)-types of TRPV6 channels elicit greater Ca(2)+ influx into the cells than ancestral-types of TRPV6: evidence from Xenopus oocytes and mammalian cell expression system.
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Derived (mutated)-types of TRPV6 channels elicit greater Ca(2)+ influx into the cells than ancestral-types of TRPV6: evidence from Xenopus oocytes and mammalian cell expression system.

机译:TRPV6通道的派生(突变)类型引起的Ca(2)+流入比TRPV6的祖先类型更大:从非洲爪蟾卵母细胞和哺乳动物细胞表达系统得到的证据。

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摘要

The frequency of the allele containing three derived nonsynonymous SNPs (157C, 378M, 681M) of the gene encoding calcium permeable TRPV6 channels expressed in the intestine has been increased by positive selection in non-African populations. To understand the nature of these SNPs, we compared the properties of Ca(2)+ influx of ancestral (in African populations) and derived-TRPV6 (in non-African populations) channels with electrophysiological, Ca(2)+-imaging, and morphological methods using both the Xenopus oocyte and mammalian cell expression systems. Functional electrophysiological and Ca(2)+-imaging analyses indicated that the derived-TRPV6 elicited more Ca(2)+ influx than the ancestral one in TRPV6-expressing cells where both channels were equally expressed in the cells. Ca(2)+-inactivation properties in the ancestral- and derived-TRPV6 were almost the same. Furthermore, fluorescence resonance energy transfer (FRET) analysis showed that both channels have similar multimeric formation properties, suggesting that derived-TRPV6 itself could cause higher Ca(2)+ influx. These findings suggest that populations having derived-TRPV6 in non-African areas may absorb higher Ca(2)+ from the intestine than ancestral-TRPV6 in the African area.
机译:通过在非非洲人群中进行阳性选择,增加了肠道中表达钙可渗透TRPV6通道的基因的三个衍生非同义单核苷酸多态性(157C,378M,681M)的等位基因频率。为了了解这些SNP的性质,我们比较了Ca(2)+祖传(在非洲人口中)和派生的TRPV6(在非非洲人口)中的流入与电生理,Ca(2)+-成像和使用非洲爪蟾卵母细胞和哺乳动物细胞表达系统的形态学方法。功能性电生理和Ca(2)+成像分析表明,派生的TRPV6引起的Ca(2)+流入量比TRPV6表达细胞中两个通道均在细胞中均表达的祖细胞多。 Ca(2)+灭活的祖先和派生的TRPV6中几乎是相同的。此外,荧光共振能量转移(FRET)分析表明,两个通道都具有相似的多聚体形成特性,表明衍生的TRPV6本身可能引起更高的Ca(2)+流入。这些发现表明,在非洲地区具有衍生TRPV6的人群比非洲地区的祖先TRPV6可以从肠道吸收更高的Ca(2)+。

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