Brökelmann J
Cell Tissue Res. 1977 Apr 29;179(4):531-62. doi: 10.1007/BF00219854.
The ultrastructural morphology of ribosomes was studied in tissue sections of rat uterus using defferent fixatives (acrolein formaldehyde, acetic acid, methanol-acetic acid, OsO4) after various pre-incubations in solutions of different osmolarity, electrolyte content, and pH. In addition, whole-mount ribosomes of spread cytoplasm of epithelial cells were examined. The results indicate: Ribosomes are "thickenings" in the course of a cytoplasmic RNP-network which extends in three dimensions between nucleus and plasma membranes. This network consists of fibrils which vary in width depending on intrinsic and extrinsic factors. Often the fibril width is approx. 100 A. In places where the fibril is folded up into ribosomal "granules" and strands the width may be 300 A. Each fibril seems to be composed of two elementary filaments, 10 A up to 40 A thick. Estimation of filament length within a ribosomal "granule" allowed the conclusion that only a fraction of a 45 S-RNA filament is folded up into a "ribosome" in cytological preparations. No morphological evidence was found for clefts within ribosomes or single messenger RNA filaments "piercing" ribosomes. Filaments of membrane-bound ribosomes appearently show continuities with fibrils within the cytoplasmic matrix on the one side and with filaments within the cisternae of the endoplasmic reticulum on the other. Ribosomal filaments of stromal cells also seen to have filamentous continuities with extracellular fibrils. This morphological evidence opens new perspectives concerning the role of RNA filaments in protein synthesis.
使用不同的固定剂(丙烯醛甲醛、乙酸、甲醇 - 乙酸、四氧化锇),在不同渗透压、电解质含量和pH值的溶液中进行各种预孵育后,对大鼠子宫组织切片中的核糖体超微结构形态进行了研究。此外,还检查了上皮细胞伸展细胞质中的整装核糖体。结果表明:核糖体是细胞质RNP网络中的“增厚部分”,该网络在细胞核和质膜之间三维延伸。这个网络由纤维组成,其宽度根据内在和外在因素而变化。纤维宽度通常约为100埃。在纤维折叠成核糖体“颗粒”和链的地方,宽度可能为300埃。每条纤维似乎由两条基本细丝组成,厚度为10埃至40埃。对核糖体“颗粒”内细丝长度的估计得出结论,在细胞学制剂中,只有一小部分45S - RNA细丝折叠成“核糖体”。没有发现核糖体内部有裂隙或单个信使RNA细丝“穿透”核糖体的形态学证据。膜结合核糖体的细丝一方面与细胞质基质内的纤维有连续性,另一方面与内质网池内的细丝有连续性。基质细胞的核糖体细丝似乎也与细胞外纤维有丝状连续性。这一形态学证据为RNA细丝在蛋白质合成中的作用开辟了新的视角。