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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >A set of SNARE proteins in the contractile vacuole complex of Paramecium regulates cellular calcium tolerance and also contributes to organelle biogenesis
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A set of SNARE proteins in the contractile vacuole complex of Paramecium regulates cellular calcium tolerance and also contributes to organelle biogenesis

机译:草履虫收缩液泡复合物中的一组SNARE蛋白调节细胞对钙的耐受性,也有助于细胞器的生物发生

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摘要

The contractile vacuole complex (CVC) of freshwater protists serves the extrusion of water and ions, including Ca2+. No vesicle trafficking based on SNAREs has been detected so far in any CVC. SNAREs (soluble NSF [N-ethylmaleimide sensitive factor] attachment protein receptors) are required for membrane-to-membrane interaction, i.e. docking and fusion also in Paramecium. We have identified three v-/R- and three t/Q-SNAREs selectively in the CVC. Posttranscriptional silencing of Syb2, Syb6 or Syx2 slows down the pumping cycle; silencing of the latter two also causes vacuole swelling. Increase in extracellular Ca2+ after Syb2, Syb6 or Syx2 silencing causes further swelling of the contractile vacuole and deceleration of its pulsation. Silencing of Syx14 or Syx15 entails lethality in the Ca2+ stress test. Thus, the effects of silencing strictly depend on the type of the silenced SNARE and on the concentration of Ca2+ in the medium. This shows the importance of organelle-resident SNARE functions (which may encompass the vesicular delivery of other organelle-resident proteins) for Ca2+ tolerance. A similar principle may be applicable also to the CVC in widely different unicellular organisms. In addition, in Paramecium, silencing particularly of Syx6 causes aberrant positioning of the CVC during de novo biogenesis before cytokinesis. ? 2012 Elsevier Ltd.
机译:淡水质子的收缩液泡复合物(CVC)用于水和离子(包括Ca2 +)的挤出。到目前为止,尚未在任何CVC中检测到基于SNARE的囊泡运输。 SNARE(可溶性NSF [N-乙基马来酰亚胺敏感因子]附着蛋白受体)是膜与膜相互作用,即在草履虫中也对接和融合所必需的。我们已经在CVC中选择性地识别出三个v- / R-和三个t / Q-SNARE。 Syb2,Syb6或Syx2的转录后沉默降低了泵浦周期;后两者的沉默也引起液泡肿胀。 Syb2,Syb6或Syx2沉默后,细胞外Ca2 +的增加会导致收缩液泡进一步肿胀并使其搏动减速。 Syx14或Syx15的沉默要求在Ca2 +压力测试中具有致命性。因此,沉默的效果严格取决于沉默的SNARE的类型以及培养基中Ca2 +的浓度。这表明细胞器驻留的SNARE功能(可能包含其他细胞器驻留的蛋白质的囊泡递送)对于Ca2 +耐受性的重要性。类似的原理也可适用于在广泛不同的单细胞生物中的CVC。另外,在草履虫中,特别是Syx6的沉默导致在胞质分裂之前从头生物发生期间CVC的异常定位。 ? 2012爱思唯尔有限公司

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