首页> 外文期刊>Journal of Parasitology >Cloning and Functional Characterization of Two Calmodulin Genes During Larval Development in the Parasitic Flatworm Schistosoma mansoni
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Cloning and Functional Characterization of Two Calmodulin Genes During Larval Development in the Parasitic Flatworm Schistosoma mansoni

机译:寄生扁虫曼氏血吸虫幼虫发育过程中两个钙调蛋白基因的克隆和功能鉴定

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摘要

Schistosomiasis is endemic in over 70 countries, in which more than 200 million people are infected with the various schistosome species. Understanding the physiological processes underlying key developmental events could be useful in developing novel chemotherapeutic reagents or infection intervention strategies. Calmodulin is a small, calcium-sensing protein found in all eukaryotes and, although the protein has been previously identified in various Schistosoma mansoni stages and implicated in egg hatching and miracidia transformation, few molecular and functional data are available for this essential protein. Herein, we report the molecular cloning, expression, and functional characterization of calmodulin in the miracidia and primary sporocyst stages of S. mansoni. Two transcripts, SmCaM1 and SmCaM2, were cloned and sequenced, and a recombinant SmCaM1 protein was expressed in Escherichia coli and used to generate anti-CaM antibodies. The 2 protein sequences were highly conserved when compared to other model organisms. The alignment of the predicted proteins of both SmCaM1 and SmCaM2 exhibited 99%% identity to each other and 97--98%% identity with mammalian calmodulins. Analysis of steady-state transcript abundance indicate that the 2 calmodulin transcripts differ in their stage-associated expression patterns, although the CaM protein isotype appears to be constitutively expressed during early larval development. Application of RNAi to larval parasites results in a ""stunted growth"" phenotype in sporocysts with 30 and 35%% reduction in transcript abundance for SmCaM1 and SmCaM2, respectively, and a corresponding 35%% reduction in protein level after incubation in double-stranded RNA. Differential expression of CaM transcripts during early larval development and a growth defect-inducing effect associated with partial transcript and protein inhibition as a result of RNAi suggest a potentially important role of calmodulin during early larval development.
机译:血吸虫病在70多个国家流行,其中有2亿多人感染了各种血吸虫病。了解关键发展事件背后的生理过程可能对开发新型化学治疗试剂或感染干预策略很有用。钙调蛋白是在所有真核生物中发现的一种小的钙敏感蛋白,尽管该蛋白先前已在曼氏血吸虫的各个阶段被鉴定出,并与卵孵化和反酸转变有关,但该基本蛋白的分子和功能数据很少。在这里,我们报告钙调蛋白的分子克隆,表达和功能特征在曼氏葡萄球菌的miracidia和主要孢子囊阶段。克隆并测序了两个转录本SmCaM1和SmCaM2,重组SmCaM1蛋白在大肠杆菌中表达并用于产生抗CaM抗体。与其他模型生物相比,这2个蛋白质序列高度保守。 SmCaM1和SmCaM2的预测蛋白的比对显示出彼此99 %%的同一性和与哺乳动物钙调蛋白的97--98 %%的同一性。稳态转录本丰度的分析表明,尽管钙调蛋白同种型似乎在幼虫早期发育过程中组成性表达,但两种钙调蛋白转录本的阶段相关表达方式不同。将RNAi应用于幼虫寄生虫会导致孢子囊“表皮生长”表型,SmCaM1和SmCaM2的转录本丰度分别降低30%和35 %%,双倍孵育后蛋白质水平相应降低35 %%。链RNA。 CaM转录物在幼虫早期发育过程中的差异表达以及与RNAi引起的部分转录本和蛋白质抑制相关的生长缺陷诱导效应表明钙调蛋白在幼虫早期发育中具有潜在的重要作用。

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