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棉铃虫微孢子虫(微孢子虫)海藻糖酶 3 的功能表征。

Functional characterization of Nosema bombycis (microsporidia) trehalase 3.

机构信息

College of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu Province, China.

The Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, Jiangsu Province, China.

出版信息

Parasitol Res. 2023 Dec 19;123(1):59. doi: 10.1007/s00436-023-08082-0.

Abstract

Nosema bombycis, an obligate intracellular parasite, is a single-celled eukaryote known to infect various tissues of silkworms, leading to the manifestation of pebrine. Trehalase, a glycosidase responsible for catalyzing the hydrolysis of trehalose into two glucose molecules, assumes a crucial role in thermal stress tolerance, dehydration, desiccation stress, and asexual development. Despite its recognized importance in these processes, the specific role of trehalase in N. bombycis remains uncertain. This investigation focused on exploring the functions of trehalase 3 in N. bombycis (NbTre3). Immunofluorescence analysis of mature (dormant) spores indicated that NbTre3 primarily localizes to the spore membrane or spore wall, suggesting a potential involvement in spore germination. Reverse transcription-quantitative polymerase chain reaction results indicated that the transcriptional level of NbTre3 peaked at 6 h post N. bombycis infection, potentially contributing to energy storage for proliferation. Throughout the life cycle of N. bombycis within the host cell, NbTre3 was detected in sporoplasm during the proliferative stage rather than the sporulation stage. RNA interference experiments revealed a substantial decrease in the relative transcriptional level of NbTre3, accompanied by a certain reduction in the relative transcriptional level of Nb16S rRNA. These outcomes suggest that NbTre3 may play a role in the proliferation of N. bombycis. The application of the His pull-down technique identified 28 proteins interacting with NbTre3, predominantly originating from the host silkworm. This finding implies that NbTre3 may participate in the metabolism of the host cell, potentially utilizing the host cell's energy resources.

摘要

微孢子虫(Nosema bombycis)是一种专性细胞内寄生虫,已知可感染家蚕的各种组织,导致微粒子病的发生。海藻糖酶(Trehalase)是一种糖苷酶,负责催化海藻糖水解为两个葡萄糖分子,在热应激耐受、脱水、干燥胁迫和无性发育中起着关键作用。尽管海藻糖酶在这些过程中具有重要作用,但它在 N. bombycis 中的具体作用仍不确定。本研究重点探讨了 N. bombycis 中海藻糖酶 3(NbTre3)的功能。成熟(休眠)孢子的免疫荧光分析表明,NbTre3 主要定位于孢子膜或孢子壁,表明其可能参与孢子萌发。反转录定量聚合酶链反应结果表明,NbTre3 的转录水平在 N. bombycis 感染后 6 小时达到峰值,可能有助于增殖时的能量储存。在宿主细胞内 N. bombycis 的整个生命周期中,在增殖阶段而不是孢子形成阶段,NbTre3 存在于孢子质体中。RNA 干扰实验显示,NbTre3 的相对转录水平显著下降,同时 Nb16S rRNA 的相对转录水平也有一定程度的下降。这些结果表明,NbTre3 可能在 N. bombycis 的增殖中发挥作用。His 下拉技术鉴定出 28 种与 NbTre3 相互作用的蛋白质,主要来源于宿主家蚕。这一发现表明,NbTre3 可能参与宿主细胞的代谢,可能利用宿主细胞的能量资源。

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