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腺苷酸激酶1对日本血吸虫童虫生长发育的影响

EFFECT OF ADENYLATE KINASE 1 ON THE GROWTH AND DEVELOPMENT OF SCHISTOSOMA JAPONICUM SCHISTOSOMULUM.

作者信息

Tang Chun-Lian, Zhang Rong-Hui, Li Ru, Li Xiu-Rong, Pan Qun, Li Li, Xiao Jin-Lei

机构信息

Wuchang Hospital affiliated to Wuhan University of Science and Technology, Wuhan 430063, China.

出版信息

J Parasitol. 2021 May 1;107(3):472-480. doi: 10.1645/19-113.

Abstract

We investigated the effect of Schistosoma japonicum adenylate kinase 1 (Sjak1) on the growth and development of schistosomula. Quantitative real-time PCR showed that Sjak1 mRNA was expressed in 3-, 10-, 14-, 18-, and 21-day-old schistosomula, and its levels increased gradually with the development of S. japonicum. Using immunohistochemical techniques, ak1 protein was found to be mainly distributed in the tegument and some parenchymal tissues of the schistosomula. Double-stranded RNA-mediated knockdowns of ak1 decreased ak1 mRNA transcripts by more than 90%, and western blot results showed that expression of ak1 protein was decreased by 66%. Scanning electron microscopy following the RNA-mediated ak1 knockdown showed that the sensory papillae did not develop. Transmission electron microscopy showed a lower mean thickness of the tegument in the Sjak1 interference group than in the negative control group. Terminal deoxynucleotidyl transferase dUTP nick-end labeling suggested higher apoptosis in the interference group than the negative control group. These results showed that ak1 may be involved in the growth and development of S. japonicum schistosomula and especially in the development of the integument. Consequently, ak1 may be a potential target in developing prevention methods for schistosomiasis in the future.

摘要

我们研究了日本血吸虫腺苷酸激酶1(Sjak1)对童虫生长发育的影响。定量实时PCR显示,Sjak1 mRNA在3日龄、10日龄、14日龄、18日龄和21日龄的童虫中均有表达,且其水平随着日本血吸虫的发育而逐渐升高。采用免疫组化技术发现,ak1蛋白主要分布在童虫的体表和一些实质组织中。双链RNA介导的ak1基因敲低使ak1 mRNA转录本减少了90%以上,蛋白质免疫印迹结果显示ak1蛋白表达降低了66%。RNA介导的ak1基因敲低后的扫描电子显微镜观察显示感觉乳头未发育。透射电子显微镜观察显示,Sjak1干扰组的体表平均厚度低于阴性对照组。末端脱氧核苷酸转移酶dUTP缺口末端标记显示干扰组的凋亡率高于阴性对照组。这些结果表明,ak1可能参与日本血吸虫童虫的生长发育,尤其是体表的发育。因此,ak1可能是未来开发血吸虫病预防方法的一个潜在靶点。

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