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果蝇仅含LIM结构域的基因dLMO,在Beadex等位基因中发生突变,可能在附肢发育中代表一种进化上保守的功能。

The Drosophila LIM-only gene, dLMO, is mutated in Beadex alleles and might represent an evolutionarily conserved function in appendage development.

作者信息

Zeng C, Justice N J, Abdelilah S, Chan Y M, Jan L Y, Jan Y N

机构信息

Howard Hughes Medical Institute, Department of Physiology and Department of Biochemistry, University of California at San Francisco, San Francisco, CA 94143-0725, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10637-42. doi: 10.1073/pnas.95.18.10637.

Abstract

The process of wing patterning involves precise molecular mechanisms to establish an organizing center at the dorsal-ventral boundary, which functions to direct the development of the Drosophila wing. We report that misexpression of dLMO, a Drosophila LIM-only protein, in specific patterns in the developing wing imaginal disc, disrupts the dorsal-ventral (D-V) boundary and causes errors in wing patterning. When dLMO is misexpressed along the anterior-posterior boundary, extra wing outgrowth occurs, similar to the phenotype seen when mutant clones lacking Apterous, a LIM homeodomain protein known to be essential for normal D-V patterning of the wing, are made in the wing disc. When dLMO is misexpressed along the D-V boundary in third instar larvae, loss of the wing margin is observed. This phenotype is very similar to the phenotype of Beadex, a long-studied dominant mutation that we show disrupts the dLMO transcript in the 3' untranslated region. dLMO normally is expressed in the wing pouch of the third instar wing imaginal disc during patterning. A mammalian homolog of dLMO is expressed in the developing limb bud of the mouse. This indicates that LMO proteins might function in an evolutionarily conserved mechanism involved in patterning the appendages.

摘要

翅膀图案形成的过程涉及精确的分子机制,以在背腹边界建立一个组织中心,该中心负责指导果蝇翅膀的发育。我们报告称,果蝇仅含LIM结构域的蛋白dLMO在发育中的翅成虫盘以特定模式错误表达时,会破坏背腹(D-V)边界并导致翅膀图案形成出现错误。当dLMO沿前后边界错误表达时,会出现额外的翅膀生长,这与在翅成虫盘中产生缺乏Apterous(一种已知对翅膀正常D-V图案形成至关重要的LIM同源结构域蛋白)的突变克隆时所观察到的表型相似。当dLMO在三龄幼虫的D-V边界错误表达时,会观察到翅边缘缺失。这种表型与Beadex的表型非常相似,Beadex是一个长期研究的显性突变,我们发现它会破坏dLMO转录本的3'非翻译区。dLMO通常在图案形成期间在三龄翅成虫盘的翅囊中表达。dLMO的一个哺乳动物同源物在小鼠发育中的肢体芽中表达。这表明LMO蛋白可能在参与附属肢体图案形成的进化保守机制中发挥作用。

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