Edelmann L
Scan Electron Microsc. 1984(Pt 2):875-88.
Microanalytical experiments have been performed to answer the question whether the main cellular cation, K+, follows the water distribution in the striated muscle cell or whether K+ follows the distribution of negative fixed charges (beta- and gamma-carboxyl groups of aspartic and glutamic acid residues). Subcellular localization of K and/or of the K surrogates Rb, Cs, and Tl has been investigated by the following methods: Chemical precipitation of K with tetraphenylborate. Autoradiography of alkali-metals and Tl in air-dried and frozen-hydrated preparations. TEM visualization of electron dense Cs and Tl in sections of freeze-dried and plastic embedded muscle. X-ray microanalysis of air-dried myofibrils and muscle cryosections. The experiments consistently show that K, Rb, Cs, and Tl do not follow the water distribution but are mainly accumulated in the A band, especially in the marginal regions, and at Z lines. The same sites preferentially accumulate Cs or uranyl cations when sections of freeze-dried, embedded muscle are exposed to these electron microscopic stains. It is concluded that the detected uneven distribution of K, Rb, Cs, and Tl in muscle is neither a freeze-drying artifact nor an embedding artifact and may result from a weak ion binding to the beta- and gamma-carboxyl groups of cellular proteins.
已开展微观分析实验,以解答以下问题:横纹肌细胞中的主要细胞阳离子K⁺是遵循水的分布,还是遵循负性固定电荷(天冬氨酸和谷氨酸残基的β-和γ-羧基)的分布。已通过以下方法研究了K以及K的替代物Rb、Cs和Tl的亚细胞定位:用四苯硼酸盐对K进行化学沉淀。在空气干燥和冷冻水合制剂中对碱金属和Tl进行放射自显影。在冷冻干燥和塑料包埋肌肉切片中对电子致密的Cs和Tl进行透射电镜观察。对空气干燥的肌原纤维和肌肉冰冻切片进行X射线微分析。实验一致表明,K、Rb、Cs和Tl不遵循水的分布,而是主要积聚在A带,尤其是边缘区域以及Z线处。当冷冻干燥、包埋的肌肉切片用这些电子显微镜染色剂处理时,相同的位点会优先积聚Cs或铀酰阳离子。得出的结论是,在肌肉中检测到的K、Rb、Cs和Tl的不均匀分布既不是冷冻干燥假象,也不是包埋假象,可能是由于离子与细胞蛋白质的β-和γ-羧基的弱结合所致。