Martínez J P, Giménez G, Bracker C E, Bartnicki-García S
Departamento de Microbiologia, Facultad de Farmacia, Universidad de Valencia, Spain.
Biochim Biophys Acta. 1989 Jan 27;990(1):45-52. doi: 10.1016/s0304-4165(89)80010-8.
Marked differences in the pattern of sedimentation of cellular structures were observed after isopycnic centrifugation of crude cell-free preparations from the Neurospora crassa wall-less 'slime' variant and mycelial wild-type strain. Kinetic studies of particle sedimentation showed that the various types of subcellular components, as revealed by turbidity, UV absorption, polypeptide patterns, and chitin synthetase activity determinations, sediment independently of one another. An important feature was the finding that chitin synthetase from 'slime' peaked at a median specific gravity of 1.1201 +/- 0.0036, whereas that from wild-type strain sedimented at a higher buoyant density (specific gravity 1.1349 +/- 0.0024). Different cultivation conditions or cell breakage procedures (osmotic lysis or ballistic disruption) did not seem to affect this sedimentation behavior. Electron microscopy revealed the presence of chitosomes (microvesicles containing chitin synthetase) in the chitin synthetase activity peaks obtained after isopycnic centrifugation of cell-free extracts from 'slime' and wild-type strains. The discrepancy in buoyant density of chitin synthetases from both N. crassa strains might point to inherent differences in chemical composition of the chitosomal microvesicles. In any case, the lower buoyant density of 'slime' chitosomes appears to be one of several major alterations in sedimentation behavior of subcellular structures. These alterations might be related to the inability of 'slime' to make a cell wall.
在对粗糙脉孢菌无壁“黏液”变体和菌丝体野生型菌株的粗无细胞制剂进行等密度离心后,观察到细胞结构沉降模式存在显著差异。颗粒沉降的动力学研究表明,通过浊度、紫外线吸收、多肽模式和几丁质合成酶活性测定所揭示的各种亚细胞成分彼此独立沉降。一个重要的发现是,“黏液”中的几丁质合成酶在中值比重1.1201±0.0036处达到峰值,而野生型菌株的几丁质合成酶在更高的浮力密度(比重1.1349±0.0024)下沉降。不同的培养条件或细胞破碎程序(渗透裂解或冲击破碎)似乎并未影响这种沉降行为。电子显微镜显示,在对“黏液”和野生型菌株的无细胞提取物进行等密度离心后获得的几丁质合成酶活性峰中存在几丁体(含有几丁质合成酶的微泡)。两种粗糙脉孢菌菌株的几丁质合成酶浮力密度的差异可能表明几丁体微泡的化学成分存在内在差异。无论如何,“黏液”几丁体较低的浮力密度似乎是亚细胞结构沉降行为的几个主要变化之一。这些变化可能与“黏液”无法形成细胞壁有关。