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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the clock protein EA4 from the silkworm Bombyx mori.
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Crystal structures of the clock protein EA4 from the silkworm Bombyx mori.

机译:家蚕钟蛋白EA4的晶体结构。

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摘要

Many insects pass the winter in an arrested developmental stage called diapause, either as eggs, as pupae, or even as adults. Exposure to the prolonged cold of winter is required to permit awakening from diapause in the spring. In the diapause eggs of the silkworm Bombyx mori, a metalloglycoprotein, esterase A4 (EA4), has been suggested to serve as a cold-duration clock because its characteristic ATPase activity is transiently elevated at the end of the necessary cold period. This timer property of EA4 is known to start with the dissociation of an inhibitory peptide (called "peptidyl inhibitory needle") under cold conditions, but its time-measuring mechanism is completely unknown. Here we present the crystal structures and functional properties of EA4 with and without glycosylation. We show that EA4 is a homodimeric ATPase, with each subunit consisting of a copper-zinc superoxide dismutase fold. There is an additional short N-terminal region that is capable of binding one more copper ion, suggesting a timer mechanism in which this ion is involved. The sugar chain appears to reinforce the binding of peptidyl inhibitory needle, which may in turn stabilize the initial conformation of the N-terminal domain, explaining the requirement for glycosylation and for the peptide to set the clock.
机译:许多昆虫以称为滞育的滞育发育阶段过冬,它们要么是卵,要么是p,甚至成年。需要暴露在长时间的冬季寒冷中,以使春天的滞育状态得以唤醒。在家蚕的滞育卵中,金属糖蛋白酯酶A4(EA4)被建议用作持续时间的时钟,因为其必需的ATPase活性在必要的寒冷时期结束时会暂时升高。已知EA4的这种计时特性始于在寒冷条件下解离抑制性肽(称为“肽基抑制针”)的开始,但其计时机制却完全未知。在这里,我们介绍了带有和不带有糖基化的EA4的晶体结构和功能特性。我们显示EA4是同型二聚ATP酶,每个亚基由铜锌超氧化物歧化酶折叠组成。还有一个额外的短N端区域能够结合一个以上的铜离子,这表明该离子参与其中的计时机制。糖链似乎加强了肽基抑制针的结合,这反过来又可以稳定N末端结构域的初始构象,从而解释了糖基化和肽节律的必要性。

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