首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The interaction of bride of sevenless with sevenless is conserved between Drosophila virilis and Drosophila melanogaster.
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The interaction of bride of sevenless with sevenless is conserved between Drosophila virilis and Drosophila melanogaster.

机译:果蝇和黑腹果蝇之间的无礼新娘与无礼新娘之间的相互作用是保守的。

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摘要

An inductive interaction between the sevenless (sev) transmembrane tyrosine kinase receptor and the bride of sevenless (boss) transmembrane ligand is required for the development of the R7 photoreceptor neuron in the compound eye of Drosophila melanogaster. The boss protein is proposed to contain a large N-terminal extracellular domain, seven transmembrane segments, and a C-terminal cytoplasmic tail. The boss protein from Drosophila virilis (bossvir) retains strong amino acid identity with loss from D. melanogaster (bossmel): 73% identity in the N-terminal extracellular domain and 91% identity in the seven-transmembrane domain, including the cytoplasmic tail. By using P-element-mediated DNA transformation, the bossmel and bossvir genes were shown to rescue the D. melanogaster boss1 mutation. The expression of bossvir protein in D. melanogaster is indistinguishable from that of bossmel protein. Noncoding sequences which may regulate boss expression were identified based on their conservation during evolution. The predicted sev protein from D. virilis (sevvir) was previously shown to be 63% identical to sev from D. melanogaster (sevmel). A chimeric gene, (sevvir/mel), encoding the extracellular domain of sevvir and the cytoplasmic domain of sevmel rescues the D. melanogaster sevd2 mutation through interaction with either bossvir or bossmel.
机译:果蝇(Sev)跨膜酪氨酸激酶受体与新娘菌之间的感应相互作用是果蝇复眼中R7感光神经元发育的必要条件。提出该boss蛋白包含一个大的N端细胞外结构域,七个跨膜区段和一个C端细胞质尾。果蝇(bossvir)的boss蛋白保留了强氨基酸同一性,而黑腹果蝇(bossmel)丢失了:N末端胞外域中有73%的同一性,七跨膜域中有91%的同一性,包括细胞质尾巴。通过使用P元素介导的DNA转化,显示了bossmel和bossvir基因可以拯救D. melanogaster boss1突变。在黑腹果蝇中bossvir蛋白的表达与bossmel蛋白的表达是无法区分的。基于它们在进化过程中的保守性,鉴定了可调节boss表达的非编码序列。先前已证明来自毒梭菌(sevvir)的预测的sev蛋白与来自黑腹果蝇(sevmel)的sev的63%相同。嵌合基因(sevvir / mel)编码sevvir的胞外结构域和sevmel的胞质结构域,通过与bossvir或bossmel相互作用来挽救黑腹果蝇Sevd2突变。

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