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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >New aspects of membrane dynamics of Amoeba proteus contractile vacuole revealed by vital staining with FM 4-64
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New aspects of membrane dynamics of Amoeba proteus contractile vacuole revealed by vital staining with FM 4-64

机译:FM 4-64活体染色揭示了变形虫变形杆菌液泡膜动力学的新方面

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The contractile vacuole (CV) cycle of Amoeba proteus has been studied by phase contrast and electron microscopy. However, the understanding of membrane dynamics in this cycle is still poor. In this study, we used live imaging by fluorescence microscopy to obtain new insights. We succeeded in staining the CV with a styryl dye, FM 4-64 (N-(3-triethylammoniumpropyl)-4-(6-(4-(diethylamino)phenyl)hexatrienyl)pyridinium dibromide), and obtained the following results. (1) The CV membrane was directly stained with the dye in the external medium when the CV pore opened upon contraction. This indicates that transfer of plasma membrane to the CV does not occur. (2) The membrane dynamics during the CV cycle were elucidated. In particular, the fluorescent CV membrane was maintained as an aggregate just after contraction and the vacuole re-formed from the aggregate. Staining was maintained during continued contraction cycles. We conclude that the CV membrane is maintained during the CV cycle.
机译:通过相差和电子显微镜研究变形虫变形杆菌的收缩液泡(CV)周期。然而,在该循环中对膜动力学的理解仍然很差。在这项研究中,我们通过荧光显微镜使用实时成像来获得新的见解。我们成功地用苯乙烯染料FM 4-64(N-(3-三乙基铵丙基)-4-(6-(4-(二乙基氨基)苯基)六三烯基)吡啶二溴化吡啶)对CV染色,获得了以下结果。 (1)当收缩时CV孔打开时,CV膜在外部介质中直接被染料染色。这表明不会发生质膜向CV的转移。 (2)阐明了在CV循环中的膜动力学。特别地,荧光CV膜在紧接收缩后保持为聚集体,并且从聚集体重新形成液泡。在持续的收缩周期中保持染色。我们得出的结论是,在CV循环过程中会保持CV膜。

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