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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Calmodulins from Schistosoma mansoni : Biochemical analysis and interaction with IQ-motifs from voltage-gated calcium channels
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Calmodulins from Schistosoma mansoni : Biochemical analysis and interaction with IQ-motifs from voltage-gated calcium channels

机译:来自Schistosoma Mansoni的钙调丝:生物化学分析和与电压门控钙通道的IQ-icif的互动

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摘要

The trematodeSchistosoma mansoniis a causative agent of schistosomiasis, the second most common parasitic disease of humans after malaria. Calcium homeostasis and calcium-mediated signalling pathways are of particular interest in this species. The drug of choice for treating schistosomiasis, praziquantel, disrupts the regulation of calcium uptake and there is interest in exploiting calcium-mediated processes for future drug discovery. Calmodulin is a calcium sensing protein, present in most eukaryotes. It is a critical regulator of processes as diverse as muscle contraction, cell division and, partly through interaction with voltage-gated calcium channels, intra-cellular calcium concentrations.S. mansoniexpresses two highly similar calmodulins – SmCaM1 and SmCaM2. Both proteins interact with calcium, manganese, cadmium (II), iron (II) and lead ions in native gel electrophoresis. These ions also cause conformational changes in the proteins resulting in the exposure of a more hydrophobic surface (as demonstrated by anilinonaphthalene-8-sulfonate fluorescence assays). The proteins are primarily dimeric in the absence of calcium ions, but monomeric in the presence of this ion. Both SmCaM1 and SmCaM2 interact with a peptide corresponding to an IQ-motif derived from the α-subunit of the voltage-gated calcium channel SmCav1B (residues 1923–1945). Both proteins bound with slightly higher affinity in the presence of calcium ions. However, there was no difference between the affinities of the two proteins for the peptide. This interaction could be antagonised by chlorpromazine and trifluoperazine, but not praziquantel or thiamylal. Interestingly no interaction could be detected with the other three IQ-motifs identified inS. mansonivoltage-gated ion calcium channels.
机译:Threadodeschistosoma Mansoniis是血吸虫病的致病因子,疟疾后的第二个最常见的人类寄生疾病。钙稳态和钙介导的信号通路对该物种特别感兴趣。治疗血吸虫病的首选药物,扰乱了钙吸收的调节,有兴趣利用钙介导的未来药物发现的过程。钙调蛋白是一种钙感测蛋白,存在于大多数真核生物中。它是一种作为肌肉收缩,细胞分裂等多种过程的关键调节因素,部分通过与电压门控钙通道的相互作用,细胞内钙浓度。 Mansoniexpresss两个高度相似的钙调素 - SMCAM1和SMCAM2。两种蛋白质与钙,锰,镉(II),铁(II)和原生凝胶电泳中的铅离子相互作用。这些离子还会导致蛋白质的构象变化导致更疏水表面暴露(如通过苯胺萘-8-磺酸盐荧光测定的荧光测定)的暴露。蛋白质主要是在没有钙离子的情况下二聚体,但在该离子存在下单体。 SMCam1和SMCam2都与与来自电压门控钙通道SMCAV1B(残留物1923-1945)的α-亚基衍生的IQ-MOTIF的肽相互作用。两种蛋白质在钙离子的存在下略高。然而,肽两种蛋白质的亲和力之间没有差异。这种相互作用可以被氯丙嗪和三氟吡嗪拮抗,但不是吡喹酮或硫胺。有趣的是,可以使用其他三个IQ-MOTIF来检测互动。 Mansonivoltage门控离子钙通道。

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