Naib-Majani W, Osborn M, Weber K, Wohlfarth-Bottermann K E, Hinssen H, Stockem W
J Cell Sci. 1983 Mar;60:13-28. doi: 10.1242/jcs.60.1.13.
Small phaneroplasmodia of Physarum polycephalum migrate, under sandwich conditions between two agar sheets and a membrane of cellophane, as thin protoplasmic sheets. This method suitably simulates the situation in the natural habitat of acellular slime moulds; i.e. the narrow clefts of the forest soil. The highly differentiated system of cytoplasmic fibrils displayed under these conditions survives both long-term extraction with glycerol and fixation with methanol, procedures that remove the strong inherent autofluorescence, thus allowing the use of immunocytochemical studies. The complicated fibrillar system of sandwiched plasmodia consists of: (1) a membrane-associated cortical filament layer in the anterior region; (2) a more or less regular polygonal fibrillar network in the intermediate region; and (3) a helically twisted fibrillar system encircling endoplasmic pathways as well as isolated strands in the posterior region. So far, three different cytoskeletal proteins have been identified immunocytochemically as constituents of the fibrillar structures: actin, myosin and AM-protein (fragmin). No positive identification of alpha-actinin, filamin and tropomyosin was obtained using antibodies against vertebrate proteins. Electron microscopy of glycerol-extracted specimens treated with antibodies against actin and myosin revealed that the 6 nm filaments consist of actin, whereas the electron-dense material between single actin filaments appears to be myosin. The AM-protein modulating the polymer status of actin is located in all fibrillar structures.
多头绒泡菌的小型显型原质团在两层琼脂片和一层玻璃纸膜之间的夹心条件下,以薄的原生质片形式迁移。这种方法适当地模拟了无细胞黏菌自然栖息地中的情况,即森林土壤的狭窄裂缝。在这些条件下显示出的高度分化的细胞质纤维系统,在甘油长期提取和甲醇固定过程中都能存活下来,这些过程去除了强烈的固有自发荧光,从而允许进行免疫细胞化学研究。夹心原质团复杂的纤维系统由以下部分组成:(1)前部区域的膜相关皮质细丝层;(2)中间区域或多或少规则的多边形纤维网络;(3)后部区域围绕内质途径以及孤立股线的螺旋扭曲纤维系统。到目前为止,通过免疫细胞化学已鉴定出三种不同的细胞骨架蛋白是纤维结构的组成成分:肌动蛋白、肌球蛋白和AM蛋白(凝溶胶蛋白)。使用针对脊椎动物蛋白的抗体未获得α-辅肌动蛋白、细丝蛋白和原肌球蛋白的阳性鉴定结果。用针对肌动蛋白和肌球蛋白的抗体处理甘油提取标本的电子显微镜显示,6纳米的细丝由肌动蛋白组成,而单根肌动蛋白细丝之间的电子致密物质似乎是肌球蛋白。调节肌动蛋白聚合状态的AM蛋白存在于所有纤维结构中。