一种内向整流钾通道是模式形成所必需的。

An inwardly rectifying K+ channel is required for patterning.

机构信息

Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT 84602, USA.

出版信息

Development. 2012 Oct;139(19):3653-64. doi: 10.1242/dev.078592.

Abstract

Mutations that disrupt function of the human inwardly rectifying potassium channel KIR2.1 are associated with the craniofacial and digital defects of Andersen-Tawil Syndrome, but the contribution of Kir channels to development is undefined. Deletion of mouse Kir2.1 also causes cleft palate and digital defects. These defects are strikingly similar to phenotypes that result from disrupted TGFβ/BMP signaling. We use Drosophila melanogaster to show that a Kir2.1 homolog, Irk2, affects development by disrupting BMP signaling. Phenotypes of irk2 deficient lines, a mutant irk2 allele, irk2 siRNA and expression of a dominant-negative Irk2 subunit (Irk2DN) all demonstrate that Irk2 function is necessary for development of the adult wing. Compromised Irk2 function causes wing-patterning defects similar to those found when signaling through a Drosophila BMP homolog, Decapentaplegic (Dpp), is disrupted. To determine whether Irk2 plays a role in the Dpp pathway, we generated flies in which both Irk2 and Dpp functions are reduced. Irk2DN phenotypes are enhanced by decreased Dpp signaling. In wild-type flies, Dpp signaling can be detected in stripes along the anterior/posterior boundary of the larval imaginal wing disc. Reducing function of Irk2 with siRNA, an irk2 deletion, or expression of Irk2DN reduces the Dpp signal in the wing disc. As Irk channels contribute to Dpp signaling in flies, a similar role for Kir2.1 in BMP signaling may explain the morphological defects of Andersen-Tawil Syndrome and the Kir2.1 knockout mouse.

摘要

突变破坏了人类内向整流钾通道 KIR2.1 的功能,与 Andersen-Tawil 综合征的颅面和数字缺陷有关,但 Kir 通道对发育的贡献尚不清楚。敲除小鼠 Kir2.1 也会导致腭裂和数字缺陷。这些缺陷与 TGFβ/BMP 信号中断引起的表型非常相似。我们使用果蝇显示 Kir2.1 同源物 Irk2 通过破坏 BMP 信号来影响发育。irk2 缺陷系、突变 irk2 等位基因、irk2 siRNA 和显性负 Irk2 亚基(Irk2DN)的表型均表明 Irk2 功能对于成年翅膀的发育是必需的。Irk2 功能受损会导致翅膀模式缺陷,类似于通过果蝇 BMP 同源物 Decapentaplegic(Dpp)中断信号时发现的缺陷。为了确定 Irk2 是否在 Dpp 途径中发挥作用,我们生成了 Irk2 和 Dpp 功能都降低的果蝇。Irk2DN 表型通过降低 Dpp 信号而增强。在野生型果蝇中,Dpp 信号可以在幼虫 imaginal 翅膀盘的前/后边界的条纹中检测到。用 siRNA、irk2 缺失或 Irk2DN 的表达降低 Irk2 的功能会降低翅膀盘中的 Dpp 信号。由于 Irk 通道有助于果蝇中的 Dpp 信号,Kir2.1 在 BMP 信号中的类似作用可能解释了 Andersen-Tawil 综合征和 Kir2.1 敲除小鼠的形态缺陷。

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