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解析 Bm-CPA 激活机制:对昆虫蜕皮调控的启示。

Insights into the activation mechanism of Bm-CPA: Implications for insect molting regulation.

机构信息

Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City, Biological Science Research Center, Southwest University, Chongqing, 400716, China.

Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City, Biological Science Research Center, Southwest University, Chongqing, 400716, China.

出版信息

Insect Biochem Mol Biol. 2024 Oct;173:104175. doi: 10.1016/j.ibmb.2024.104175. Epub 2024 Aug 10.

Abstract

Carboxypeptidase A has been found across various animal species, yet its activation mechanism during the insect molting process remains elusive. Our study specifically delved into the activation mechanism of carboxypeptidase A (Bm-CPA), identified in Bombyx mori's molting fluid during metamorphosis. Initially, western blotting identified two forms of Bm-CPA, 65 kDa and 54 kDa, in the epidermis of silkworms during the molting stage. Expressing the complete Bm-CPA sequence in Pichia pastoris allowed the identification, via mass spectrometry analysis, of a 75-amino-acid propeptide for the initial hydrolysis process. Subsequently, a 35 kDa form of Bm-CPA emerged in the molting fluid, confirmed as the active form through in vitro assays, demonstrating potent carboxypeptidase A activity and faint carboxypeptidase B activity. Four potential activation sites (including Lys158/Arg159 and Arg177/Arg178) were identified through mass spectrometry and amino acid mutation analysis. RNAi of Bm-CPA indicates its critical role in molting. Finally, the carboxypeptidase inhibitor (Bm-CPI) from silkworm molting fluid was expressed to explore its role in regulating Bm-CPA activity, demonstrating a direct interaction with the 35 kDa Bm-CPA. Our research implies Bm-CPA's potential involvement in the silkworm molting process, suggesting diverse regulatory roles. These findings highlight intricate protein regulation patterns during insect metamorphosis and development.

摘要

羧肽酶 A 已在多种动物物种中被发现,但它在昆虫蜕皮过程中的激活机制仍不明确。我们的研究特别深入探讨了羧肽酶 A(Bm-CPA)的激活机制,该酶在变态过程中从家蚕的蜕皮液中被鉴定出来。最初,在蜕皮阶段,通过 Western blot 在蚕的表皮中鉴定出两种形式的 Bm-CPA,分子量为 65 kDa 和 54 kDa。在毕赤酵母中表达完整的 Bm-CPA 序列,通过质谱分析鉴定出一个 75 个氨基酸残基的原肽,用于初始水解过程。随后,在蜕皮液中出现了一种 35 kDa 的 Bm-CPA 形式,通过体外实验证实为活性形式,表现出强烈的羧肽酶 A 活性和微弱的羧肽酶 B 活性。通过质谱分析和氨基酸突变分析,鉴定出四个潜在的激活位点(包括 Lys158/Arg159 和 Arg177/Arg178)。Bm-CPA 的 RNAi 表明它在家蚕蜕皮过程中起着关键作用。最后,表达了来自蚕蜕皮液的羧肽酶抑制剂(Bm-CPI),以探讨其在调节 Bm-CPA 活性中的作用,表明其与 35 kDa 的 Bm-CPA 有直接相互作用。我们的研究表明 Bm-CPA 可能参与了家蚕蜕皮过程,暗示了其在调控中的多种作用。这些发现突出了昆虫变态和发育过程中复杂的蛋白质调节模式。

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