首页> 美国卫生研究院文献>other >A Sperm–Plasma β-N-Acetyl-D-Hexosaminidase Interacting with a Chitinolytic β-N-Acetyl-D-Hexosaminidase in Insect Molting Fluid
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A Sperm–Plasma β-N-Acetyl-D-Hexosaminidase Interacting with a Chitinolytic β-N-Acetyl-D-Hexosaminidase in Insect Molting Fluid

机译:昆虫蜕皮液中的精子-血浆β-N-乙酰基-D-己糖胺酶与几丁质分解β-N-乙酰基-D-己糖胺酶相互作用

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摘要

Insects require molting fluids to shed the old cuticle during molting. β-N-acetyl-D-hexosaminidase, known as Hex1, together with various chitinases, is responsible for degrading the chitin component of the old cuticle. This study showed that another β-N-acetyl-D-hexosaminidase, termed OfHex3, interacted with Hex1 and functioned in the molting fluid, although the homolog of OfHex3 was known as a sperm–plasma enzyme functioning in egg–sperm recognition. OfHex3 is an enzyme cloned from the insect Asian corn borer, Ostrinia furnacalis, which is one of the most destructive pests of maize. The enzymatic activity analysis indicated that OfHex3 was able to degrade chitooligosaccharides, but at a lower rate than that of OfHex1. Because OfHex3 did not have substrate inhibition, we deduced that the presence of OfHex3 might help OfHex1 relieve substrate inhibition during chitin degradation during molting. The expression patterns of OfHex3 during O. furnacalis development were studied by real-time PCR as well as western blot. The results showed that both gene transcription and protein translation levels of OfHex3 were up-regulated during larval–larval molting. The tissue-specific expression pattern analysis indicated that OfHex3 was mostly localized in the fat body and testis. All these data further supported that Hex3 was involved in molting as well as in fertilization. This study may help to understand the complexity of cuticle degradation during insect molting, and may provide a possible target for pest control.
机译:昆虫需要蜕皮液才能在蜕皮过程中脱落旧表皮。 β-N-乙酰基-D-己糖胺酶(称为Hex1)与各种几丁质酶一起,负责降解旧表皮的几丁质成分。这项研究表明,另一种称为OfHex3的β-N-乙酰基-D-己糖胺酶与Hex1相互作用并在蜕皮液中起作用,尽管OfHex3的同系物被称为在卵-精子识别中起作用的精浆酶。 OfHex3是从亚洲玉米bore虫Ostrinia furnacalis中克隆的一种酶,它是玉米中最具破坏性的害虫之一。酶活性分析表明OfHex3能够降解壳寡糖,但降解速率低于OfHex1。由于OfHex3没有底物抑制作用,我们推断OfHex3的存在可能有助于OfHex1解除蜕皮过程中几丁质降解过程中的底物抑制作用。通过实时荧光定量PCR和western blot研究了O.furnacalis发育过程中OfHex3的表达模式。结果表明,在幼虫-幼虫蜕皮期间,OfHex3的基因转录和蛋白质翻译水平均被上调。组织特异性表达模式分析表明,OfHex3主要位于脂肪体和睾丸中。所有这些数据进一步支持了Hex3参与了蜕皮和受精。这项研究可能有助于了解昆虫蜕皮过程中表皮降解的复杂性,并可能为害虫防治提供目标。

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