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四膜虫中的钙调蛋白:从体内定位到超微结构水平

Calmodulin in Paramecium tetraurelia: localization from the in vivo to the ultrastructural level.

作者信息

Momayezi M, Kersken H, Gras U, Vilmart-Seuwen J, Plattner H

出版信息

J Histochem Cytochem. 1986 Dec;34(12):1621-38. doi: 10.1177/34.12.3097118.

Abstract

Monospecific polyclonal antibodies against Paramecium tetraurelia calmodulin were prepared and labeled for calmodulin localization on different levels of resolution: by microinjection into living cells; with isolated cell surface complexes (cortices); on the ultrastructural level, using Lowicryl sections of non-permeabilized cells (with colloidal gold-protein A labeling of antibodies bound); or using permeabilized and gently fixed cells for incubation with peroxidase- or microperoxidase-tagged antibodies. Sites selectively labeled above cytoplasmic background largely coincided, irrespective of the method used, although sensitivity, resolution, and liability to redistribution of antigen were quite different. (The methodological diversification applied allowed for their mutual control.) Nonspecific binding can be largely excluded, since all these methods gave negative results with pre-immune sera. We reached the following conclusions on sites with selective calmodulin binding (above cytoplasmic background level) in P. tetraurelia cells. A pool of calmodulin co-localized with F-actin, not only in the cortex (including fibrous materials around ciliary basal bodies) but also around food vacuoles (phagosomes) and, to a lesser degree, around the buccal cavity. Trichocyst docking sites on the cell membrane, and coated pits also displayed calmodulin labeling, thus indicating the potential involvement of calmodulin in exo-endocytosis processes. Calmodulin was also enriched on membranes of compartments with presumable ion (possibly Ca2+) transport capacity, such as trichocysts and the osmoregulatory system. Not selectively labeled were nuclei, mitochondria, and some small lysosomal organelles (as identified in vivo by rhodamine 123 or acridine orange fluorescence, respectively).

摘要

制备了针对四膜虫钙调蛋白的单特异性多克隆抗体,并对其进行标记,以便在不同分辨率水平上定位钙调蛋白:通过显微注射到活细胞中;使用分离的细胞表面复合物(皮层);在超微结构水平上,使用未通透细胞的Lowicryl切片(用胶体金-蛋白A标记结合的抗体);或者使用通透并轻度固定的细胞与过氧化物酶或微过氧化物酶标记的抗体孵育。尽管灵敏度、分辨率以及抗原重新分布的可能性差异很大,但无论使用何种方法,在细胞质背景之上选择性标记的位点基本一致。(所应用的方法多样化使得它们可以相互对照。)由于所有这些方法用免疫前血清都得到阴性结果,因此可以很大程度上排除非特异性结合。我们就四膜虫细胞中选择性钙调蛋白结合位点(高于细胞质背景水平)得出以下结论。一部分钙调蛋白与F-肌动蛋白共定位,不仅在皮层(包括纤毛基体周围的纤维物质),还在食物泡(吞噬体)周围,在较小程度上也在口腔周围。细胞膜上的刺丝泡对接位点和被膜小窝也显示有钙调蛋白标记,这表明钙调蛋白可能参与胞吐-胞吞过程。钙调蛋白在可能具有离子(可能是Ca2+)运输能力的区室膜上也有富集,如刺丝泡和渗透调节系统。细胞核、线粒体和一些小的溶酶体细胞器(分别通过罗丹明123或吖啶橙荧光在体内鉴定)没有被选择性标记。

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