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枯草芽孢杆菌孢子萌发和生长过程中的大分子合成

Macromolecular syntheses during germination and outgrowth of Bacillus subtilis spores.

作者信息

Garrick-Silversmith L, Torriani A

出版信息

J Bacteriol. 1973 May;114(2):507-16. doi: 10.1128/jb.114.2.507-516.1973.

Abstract

Alanine and glucose used jointly are known to be necessary and sufficient for spore germination in Bacillus subtilis 168. By testing them separately, we have verified that alanine provokes optimal phase-darkening of the spores but inhibits macromolecular syntheses, while glucose is specifically needed for initiating those syntheses. By using them in succession we obtained evidence suggesting that: (i) sporal modifications which lead to phase-darkening must occur before macromolecular synthesis can start; (ii) the amino acid pool, on which the early protein synthesis is solely dependent, expands during incubation in alanine which allows degradative but prevents synthetic activities; and (iii) progression of degradations in alanine not promptly followed by syntheses in glucose produce a metabolic imbalance in the germinating spore. A sharp transition in the origin of building blocks was shown by using a tryptophan-defective mutant. At first the synthesis of proteins depended on pre-existing amino acids from turnover of sporal material since it occurred in the absence of any exogenous amino acid and its rate remained unaltered by supplying either all amino acids except tryptophan or tryptophan alone. Eventually, protein synthesis became dependent strictly on exogenous tryptophan and strongly on the supply of several other amino acids, not required later during vegetative growth. Clearly, by the start of outgrowth, all building blocks must be provided either by endogenous de novo synthesis or by exogenous supply.

摘要

已知丙氨酸和葡萄糖共同使用对于枯草芽孢杆菌168的孢子萌发是必要且充分的。通过分别对它们进行测试,我们证实丙氨酸可引起孢子最佳的暗相变化,但会抑制大分子合成,而葡萄糖是启动这些合成所特别需要的。通过相继使用它们,我们获得的证据表明:(i)导致暗相变化的孢子修饰必须在大分子合成开始之前发生;(ii)早期蛋白质合成唯一依赖的氨基酸库在丙氨酸中孵育期间会扩大,这允许降解但阻止合成活性;(iii)在丙氨酸中降解的进程如果没有紧接着在葡萄糖中进行合成,会在萌发的孢子中产生代谢失衡。通过使用色氨酸缺陷型突变体显示了构建模块来源的急剧转变。起初,蛋白质合成依赖于孢子物质周转产生的预先存在的氨基酸,因为它在没有任何外源氨基酸的情况下发生,并且通过供应除色氨酸之外的所有氨基酸或单独供应色氨酸,其速率保持不变。最终,蛋白质合成严格依赖于外源色氨酸,并且强烈依赖于几种其他氨基酸的供应,而这些氨基酸在营养生长后期并不需要。显然,在生长开始时,所有构建模块必须通过内源性从头合成或外源供应来提供。

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