首页> 外文期刊>Archives of Insect Biochemistry and Physiology >MOLECULAR CHARACTERIZATION OF SOLUBLE AND MEMBRANE-BOUND TREHALASES IN THE COTTON MIRID BUG, Apolygus lucorum
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MOLECULAR CHARACTERIZATION OF SOLUBLE AND MEMBRANE-BOUND TREHALASES IN THE COTTON MIRID BUG, Apolygus lucorum

机译:棉M的可溶性和膜结合性盐酸盐的分子表征

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摘要

Trehalose, a major hemolymph sugar in insects, is hydrolyzed by trehalase. We identified a soluble and a membrane-bound form of trehalase and isolated the corresponding mRNA, ALTre-1, and ALTre-2 in the cotton mirid bug, Apolygus lucorum. The deduced amino acid sequences of ALTre-1 and ALTre-2 revealed mature proteins with 643 and 617 amino acids, respectively. ALTre-1 and ALTre-2 contained trehalase signature motifs, and ALTre-2 contained a putative transmembrane domain near the C-terminus, suggesting that ALTre-1 and ALTre-2 encoded a soluble trehalase and a membrane-bound trehalase, respectively. Comparison of trehalase activity at different developmental stages and in six tissues indicated that soluble trehalase activity accounted for the majority of total trehalase activity in A. lucorum. ALTre-1 and ALTre-2 were expressed in all tissues and stages, with the highest expression of both in the second instar nymphs, ALTre-1 in the ovary and malpighian tubules, ALTre-2 in the flight muscles and fat body. Following the exposure of second instar nymph to 20-E, the soluble trehalase activity increased gradually while the membrane-bound trehalase activity remained at its initial level. Similarly, 20-E upregulated ALTre-1 expression but had no effect on ALTre-2 expression. These results suggest that an increase of this soluble trehalase activity was upregulated by ALTre-1 gene.
机译:海藻糖是昆虫中的主要血淋巴糖,可被海藻糖酶水解。我们确定了海藻糖酶的一种可溶性和膜结合形式,并在棉mi虫(Apolygus lucorum)中分离了相应的mRNA,ALTre-1和ALTre-2。推导的ALTre-1和ALTre-2氨基酸序列揭示了分别具有643和617个氨基酸的成熟蛋白。 ALTre-1和ALTre-2包含海藻糖酶签名基序,而ALTre-2则在C末端附近包含一个推定的跨膜结构域,表明ALTre-1和ALTre-2分别编码了可溶性海藻糖酶和膜结合海藻糖酶。在不同发育阶段和六个组织中海藻糖酶活性的比较表明,可溶性海藻糖酶活性占A. lucorum中总海藻糖酶活性的大部分。 ALTre-1和ALTre-2在所有组织和阶段均表达,在第二龄若虫中表达最高,在卵巢和马尔巴吉亚小管中表达ALTre-1,在飞行肌肉和脂肪体内表达ALTre-2。在第二龄若虫暴露于20-E之后,可溶性海藻糖酶活性逐渐增加,而与膜结合的海藻糖酶活性则保持在其初始水平。同样,20 E上调ALTre-1表达,但对ALTre-2表达没有影响。这些结果表明该可溶性海藻糖酶活性的增加被ALTre-1基因上调。

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