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果蝇宽基因座的进化:烟草天蛾宽Z4亚型在果蝇中具有生物活性。

Evolution of the Drosophila broad locus: the Manduca sexta broad Z4 isoform has biological activity in Drosophila.

作者信息

Bayer Cynthia, Zhou Xiaofeng, Zhou Baohua, Riddiford Lynn M, von Kalm Laurence

机构信息

Department of Biology, University of Central Florida, Orlando, FL 32816-2368, USA.

出版信息

Dev Genes Evol. 2003 Oct;213(10):471-6. doi: 10.1007/s00427-003-0354-4. Epub 2003 Sep 12.

Abstract

The Drosophila melanogaster broad locus is essential for normal metamorphic development. Broad encodes three genetically distinct functions (rbp, br, and 2Bc) and a family of four zinc-finger DNA-binding proteins (Z1-Z4). The Z1, Z2, and Z3 protein isoforms are primarily associated with the rbp, br, and 2Bc genetic functions respectively. The Z4 protein isoform also provides some rbp genetic function, however an essential function for the Z4 isoform in metamorphosis has not been identified. To determine the degree of conservation of Z4 function between the tobacco hornworm Manduca sexta and Drosophila we generated transgenic Drosophila expressing the Manduca broad Z4 isoform and used this transgene to rescue rbp mutant lethality during Drosophila metamorphosis. We find that the Manduca Z4 protein has significant biological activity in Drosophila with respect to rescue of rbp-associated lethality. There was also some overlap in effects on cuticle gene expression between the Manduca Z4 and Drosophila Z1 isoforms that was not shared with the Drosophila Z4 isoform. Our findings show that Z4 function has been conserved over the 260-million-year period since the divergence of Diptera and Lepidoptera, and are consistent with the hypothesis that the Drosophila Z4 and Manduca Z4 isoforms have essential roles in metamorphosis.

摘要

果蝇的broad基因座对于正常的变态发育至关重要。Broad编码三种遗传上不同的功能(rbp、br和2Bc)以及一个由四个锌指DNA结合蛋白组成的家族(Z1-Z4)。Z1、Z2和Z3蛋白异构体分别主要与rbp、br和2Bc遗传功能相关。Z4蛋白异构体也提供一些rbp遗传功能,然而尚未确定Z4异构体在变态中的基本功能。为了确定烟草天蛾Manduca sexta和果蝇之间Z4功能的保守程度,我们构建了表达烟草天蛾broad Z4异构体的转基因果蝇,并利用该转基因来挽救果蝇变态过程中rbp突变体的致死性。我们发现,烟草天蛾Z4蛋白在果蝇中对于挽救rbp相关的致死性具有显著的生物学活性。在对表皮基因表达的影响方面,烟草天蛾Z4和果蝇Z1异构体之间也存在一些重叠,而果蝇Z4异构体则没有这种情况。我们的研究结果表明,自双翅目和鳞翅目分化以来的2.6亿年里,Z4功能一直保守,并且与果蝇Z4和烟草天蛾Z4异构体在变态中具有重要作用的假设一致。

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