Yonemura S, Pollard T D
Department of Cell Biology and Anatomy, Johns Hopkins Medical School, Baltimore, MD 21205.
J Cell Sci. 1992 Jul;102 ( Pt 3):629-42. doi: 10.1242/jcs.102.3.629.
We used several fixation protocols and a panel of monoclonal antibodies to re-examine the localization of myosin I and myosin II in Acanthamoeba. Two monoclonal antibodies that bind to the head of myosin II stain a range of particles in the cytoplasm. The smallest and most numerous cytoplasmic particles are about the same size and intensity as myosin II minifilaments and are distributed throughout the endoplasm. The largest particles stain like myosin II thick filaments and are concentrated in the cleavage furrow of dividing cells and in the tail of locomoting cells. Five different monoclonal antibodies that bind to the myosin II tail also stain cytoplasmic particles but with a limited range of intensity. None of the myosin II monoclonal antibodies stains the contractile vacuole or plasma membrane. Two monoclonal antibodies to myosin I gave punctate cytoplasmic staining that did not correspond clearly to any of the phase-dense particles in the cytoplasm. In many, but not all, locomoting cells, the myosin I staining was concentrated at the leading edge. Both myosin I antibodies stained a single cytoplasmic vacuole of variable size that was presumed to be the contractile vacuole. The antibody that binds myosin IA but not myosin IB stained novel intercellular contacts and the antibody that binds both myosin IA and myosin IB stained the plasma membrane, especially the tips of filopodia.
我们使用了几种固定方案和一组单克隆抗体,重新检查肌球蛋白I和肌球蛋白II在棘阿米巴中的定位。两种与肌球蛋白II头部结合的单克隆抗体可对细胞质中的一系列颗粒进行染色。最小且数量最多的细胞质颗粒大小和强度与肌球蛋白II微丝大致相同,分布在内质中。最大的颗粒染色类似于肌球蛋白II粗丝,集中在分裂细胞的分裂沟和运动细胞的尾部。五种与肌球蛋白II尾部结合的不同单克隆抗体也可对细胞质颗粒进行染色,但强度范围有限。没有一种肌球蛋白II单克隆抗体能对收缩泡或质膜进行染色。两种针对肌球蛋白I的单克隆抗体呈现点状细胞质染色,与细胞质中任何相密集颗粒均无明显对应关系。在许多(但并非全部)运动细胞中,肌球蛋白I染色集中在前缘。两种肌球蛋白I抗体均对一个大小可变的单个细胞质泡进行染色,推测该泡为收缩泡。结合肌球蛋白IA但不结合肌球蛋白IB的抗体可对新的细胞间接触进行染色,而结合肌球蛋白IA和肌球蛋白IB的抗体可对质膜进行染色,尤其是丝状伪足的尖端。