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Isolation and structure of the lipid envelopes from the nitrogen-fixing vesicles of Frankia sp. strain CpI1.

机译:从Frankia sp。的固氮囊泡分离脂质包膜和结构。菌株CpI1。

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摘要

Frankia vesicles are differentiated during nitrogen starvation; they contain nitrogenase whether produced by free-living frankiae or by frankiae in actinorhizal root nodules. Vesicles are surrounded by envelopes of several monolayers of uncharacterized lipid. It has been suggested that the envelope limits diffusion of O2 into the vesicle cytoplasm, thereby preventing inactivation of nitrogenase. Whole vesicles were prepared on sucrose gradients and sonicated, and vesicle envelopes were isolated on top of a cushion of 40% sucrose. Transmission electron microscopy of potassium permanganate-fixed envelopes confirmed the purity of these preparations. Only the outer and inner envelope layers were visible in permanganate-fixed intact vesicles; the laminae were not visible in aldehyde-osmium-fixed, lead citrate-uranyl acetate-stained whole vesicles. However, the laminated nature of the envelope was clearly evident in sonicated vesicles and in envelope fragments fixed with KMnO4. The observations indicate that partial disruption of the vesicle envelope enables its visualization with permanganate fixation, and these observations open the way for further studies on the relationship of the vesicle surface to environmental conditions.
机译:Frankia囊泡在氮饥饿期间分化。它们含有固氮酶,无论是由自由生活的Frankiae还是由Frankiae在放线根结节中产生的。囊泡被数个未表征脂质的单层包膜包围。已经提出包膜限制了O 2扩散到囊泡细胞质中,从而防止了固氮酶的失活。以蔗糖梯度制备整个囊泡并进行超声处理,并在40%蔗糖的缓冲垫上分离囊泡包膜。高锰酸钾固定的包膜的透射电子显微镜证实了这些制剂的纯度。在高锰酸盐固定的完整囊泡中仅可见外包膜层和内包膜层;在醛-固定的柠檬酸铀酰乙酸铀酯染色的整个囊泡中看不到薄片。但是,在超声处理的囊泡和用KMnO4固定的信封碎片中,信封的层压性质很明显。观察结果表明,囊泡包膜的部分破坏使其能够通过高锰酸盐固定而可视化,这些观察结果为进一步研究囊泡表面与环境条件之间的关系开辟了道路。

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