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黑腹果蝇中的二肽酶C:遗传、个体发育及组织特异性变异

Dipeptidase-C in Drosophila melanogaster: genetic, ontogenetic, and tissue-specific variation.

作者信息

Hiraizumi K, Hourani C L, Zambarano M C, Freeman J E, Mathes K D

机构信息

Department of Biology, Gettysburg College, Pennsylvania 17325.

出版信息

Biochem Genet. 1992 Dec;30(11-12):603-24. doi: 10.1007/BF02399810.

Abstract

Dip-A, Dip-B, and Dip-C constitute structural genes for three peptidic enzymes in Drosophila melanogaster distinct from the leucine aminopeptidases. Their ontogenetic and tissue distributions of activities suggest the involvement of these enzymes in a general metabolic role, such as the regulation of amino acid and oligopeptide pools to make amino acids available for protein synthesis. Screening of chromosome substitution isogenic lines for DIP-C activity indicated that, like DIP-A and DIP-B, unlinked activity modifiers exist for Dip-C. The developmental profiles of dipeptidase activities are very similar, except in the pupal stage, during which DIP-C activity is markedly low compared to the other two enzymes. Intercorrelations of dipeptidase activities vary ontogenetically, which is consistent with the need for coordinate expression of these enzymes during certain developmental stages. Tissue-specific expression of dipeptidases in larvae and adults are also similar, although the relative levels of DIP-A activity differ from those of DIP-B and DIP-C in certain organs and body parts. Some of the differences among chromosome substitution lines for dipeptidase activities appear to be systemic, while others are developmental stage-specific and tissue-specific. Second- and third-chromosome variants for DIP-C activity differed in their tissue distribution. This is consistent with the presence of temporal and spatial variants in natural populations for other Drosophila enzymes.

摘要

Dip - A、Dip - B和Dip - C构成了黑腹果蝇中三种肽酶的结构基因,这些肽酶不同于亮氨酸氨肽酶。它们的个体发生和组织活性分布表明这些酶参与了一般的代谢作用,例如调节氨基酸和寡肽库,以使氨基酸可用于蛋白质合成。对DIP - C活性的染色体替代同基因系进行筛选表明,与Dip - A和Dip - B一样,Dip - C存在非连锁的活性修饰因子。二肽酶活性的发育谱非常相似,除了在蛹期,在此期间DIP - C活性与其他两种酶相比明显较低。二肽酶活性的相互关联在个体发育过程中有所不同,这与在某些发育阶段对这些酶进行协调表达的需求一致。幼虫和成虫中二肽酶的组织特异性表达也相似,尽管在某些器官和身体部位DIP - A活性的相对水平与DIP - B和DIP - C不同。二肽酶活性的染色体替代系之间的一些差异似乎是全身性的,而其他差异则是发育阶段特异性和组织特异性的。DIP - C活性的第二和第三染色体变体在其组织分布上有所不同。这与其他果蝇酶在自然种群中存在时间和空间变体一致。

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