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钙黏蛋白调节果蝇左右不对称建立过程中的非典型肌球蛋白 ID 和肌球蛋白 IC。

DE-Cadherin regulates unconventional Myosin ID and Myosin IC in Drosophila left-right asymmetry establishment.

机构信息

Institute of Biology Valrose, University of Nice Sophia-Antipolis, UMR7277-CNRS, UMR1091 INSERM, Parc Valrose, 06108 Nice Cedex 2, France.

出版信息

Development. 2012 May;139(10):1874-84. doi: 10.1242/dev.047589. Epub 2012 Apr 4.

Abstract

In bilateria, positioning and looping of visceral organs requires proper left-right (L/R) asymmetry establishment. Recent work in Drosophila has identified a novel situs inversus gene encoding the unconventional type ID myosin (MyoID). In myoID mutant flies, the L/R axis is inverted, causing reversed looping of organs, such as the gut, spermiduct and genitalia. We have previously shown that MyoID interacts physically with β-Catenin, suggesting a role of the adherens junction in Drosophila L/R asymmetry. Here, we show that DE-Cadherin co-immunoprecipitates with MyoID and is required for MyoID L/R activity. We further demonstrate that MyoIC, a closely related unconventional type I myosin, can antagonize MyoID L/R activity by preventing its binding to adherens junction components, both in vitro and in vivo. Interestingly, DE-Cadherin inhibits MyoIC, providing a protective mechanism to MyoID function. Conditional genetic experiments indicate that DE-Cadherin, MyoIC and MyoID show temporal synchronicity for their function in L/R asymmetry. These data suggest that following MyoID recruitment by β-Catenin at the adherens junction, DE-Cadherin has a twofold effect on Drosophila L/R asymmetry by promoting MyoID activity and repressing that of MyoIC. Interestingly, the product of the vertebrate situs inversus gene inversin also physically interacts with β-Catenin, suggesting that the adherens junction might serve as a conserved platform for determinants to establish L/R asymmetry both in vertebrates and invertebrates.

摘要

在两侧对称动物中,内脏器官的定位和环化需要正确的左右(L/R)不对称建立。最近在果蝇中的研究确定了一个新的内脏错位基因,该基因编码非常规的 I 型肌球蛋白(MyoID)。在 MyoID 突变体果蝇中,L/R 轴被反转,导致器官如肠道、精管和生殖器的反向环化。我们之前已经表明,MyoID 与β-Catenin 物理相互作用,这表明黏着连接在果蝇的 L/R 不对称中起作用。在这里,我们表明 DE-Cadherin 与 MyoID 共免疫沉淀,并需要 MyoID 的 L/R 活性。我们进一步证明,密切相关的非常规 I 型肌球蛋白 MyoIC 可以通过防止其与黏着连接成分结合,在体外和体内都可以拮抗 MyoID 的 L/R 活性。有趣的是,DE-Cadherin 抑制 MyoIC,为 MyoID 功能提供了一种保护机制。条件遗传实验表明,DE-Cadherin、MyoIC 和 MyoID 在 L/R 不对称中的功能具有时间同步性。这些数据表明,在 MyoID 被β-Catenin 在黏着连接募集后,DE-Cadherin 通过促进 MyoID 活性和抑制 MyoIC 活性对果蝇的 L/R 不对称具有双重作用。有趣的是,脊椎动物内脏错位基因 inversin 的产物也与β-Catenin 物理相互作用,这表明黏着连接可能作为一个保守的平台,用于在脊椎动物和无脊椎动物中建立 L/R 不对称的决定因素。

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