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首页> 外文期刊>The Journal of Experimental Biology >Long-term effects of the trehalase inhibitor trehazolin on trehalase activity in locust flight muscle
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Long-term effects of the trehalase inhibitor trehazolin on trehalase activity in locust flight muscle

机译:海藻糖酶抑制剂海藻糖蛋白对蝗虫飞行肌肉海藻糖酶活性的长期影响

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摘要

Trehalase (EC 3.2.1.28) hydrolyzes the main haemolymph sugar of insects, trehalose, into the essential cellular substrate glucose. Trehalase in locust flight muscle is bound to membranes that appear in the microsomal fraction upon tissue fractionation, but the exact location in vivo has remained elusive. Trehalase has been proposed to be regulated by a novel type of activity control that is based on the reversible transformation of a latent (inactive) form into an overt (active) form. Most trehalase activity from saline-injected controls was membrane-bound (95%) and comprised an overt form (similar to 25%) and a latent form (75%). Latent trehalase could be assayed only after the integrity of membranes had been destroyed. Trehazolin, a potent tight-binding inhibitor of trehalase, is confined to the extracellular space and has been used as a tool to gather information on the relationship between latent and overt trehalase. Trehazolin was injected into the haemolymph of locusts, and the trehalase activity of the flight muscle was determined at different times over a 30-day period. Total trehalase activity in locust flight muscle was markedly inhibited during the first half of the interval, but reappeared during the second half. Inhibition of the overt form preceded inhibition of the latent form, and the time course suggested a reversible precursor-product relation (cycling) between the two forms. The results support the working hypothesis that trehalase functions as an ectoenzyme, the activity of which is regulated by reversible transformation of latent into overt trehalase.
机译:海藻糖酶(EC 3.2.1.28)将昆虫的主要血淋巴糖海藻糖水解为必需的细胞底物葡萄糖。蝗虫飞行肌中的海藻糖酶与组织分级分离后出现在微粒体级分中的膜结合,但体内的确切位置仍然难以捉摸。已经提出海藻糖酶可以通过一种新型的活性控制来调节,该活性控制基于潜在(非活性)形式向显性(活性)形式的可逆转化。来自注射盐水的对照的大多数海藻糖酶活性是膜结合的(95%),并且包括明显的形式(大约25%)和潜在的形式(75%)。潜在的海藻糖酶只有在膜的完整性被破坏后才能进行测定。 Trehazolin是一种有效的海藻糖酶紧密结合抑制剂,被限制在细胞外空间,已被用作收集有关潜在与显性海藻糖酶之间关系的信息的工具。将Trehazolin注射到蝗虫的血淋巴中,并在30天的不同时间确定飞行肌肉的海藻糖酶活性。在间隔的前半段,刺槐飞行肌肉中的总海藻糖酶活性受到明显抑制,但在下半段重新出现。明显形式的抑制先于潜在形式的抑制,时间过程表明两种形式之间存在可逆的前体-产物关系(循环)。结果支持了工作假说,即海藻糖酶是一种外切酶,其活性受潜伏性向明显的海藻糖酶的可逆转化的调节。

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