Setlow P
J Biol Chem. 1975 Jan 25;250(2):631-7.
Two distinct proteolytic systems have been detected during germination of Bacillus megaterium spores: one degrading a unique class of dormant spore proteins and the other degrading primarily protein synthesized during germination. Proteolysis of dormant spore protein began by the 3rd min of germination and by 25 min had degraded 15 to 20% of the pre-existing protein to free amino acids. This reaction was not significantly ( less than 20%) different with or without amino acids or a carbon or nitrogen source in the germination medium, or when RNA synthesis, protein synthesis, or energy metabolism were inhibited. Spore coat proteins and most enzymes were not degraded in this process, rather the major substrates were a unique class of low molecular weight (6,000 to 12,000) proteins which were soluble in acetic acid. Proteins synthesized early in germination (0 to 12 min) were also degraded rapidly (20% per hour). However, proteins synthesized later in germination (90 to 100 min) were degraded more slowly (similar to 4% per hour). At all times tested proteolysis of newly synthesized protein was identical in the presence or absence of amino acids or chloramphenical in the medium, but was abolished by inhibitors of energy metabolism. Most proteins degraded in this process had molecular weights greater than 12,000 and were insoluble in acetic acid.
一种降解一类独特的休眠孢子蛋白,另一种主要降解萌发过程中合成的蛋白。休眠孢子蛋白的蛋白水解在萌发第3分钟开始,到25分钟时,已有15%至20%的原有蛋白被降解为游离氨基酸。在萌发培养基中有无氨基酸、碳源或氮源,或RNA合成、蛋白质合成或能量代谢受到抑制时,该反应没有显著差异(小于20%)。芽孢衣蛋白和大多数酶在这个过程中没有被降解,主要底物是一类可溶于乙酸的独特低分子量(6000至12000)蛋白。萌发早期(0至12分钟)合成的蛋白也迅速被降解(每小时20%)。然而,萌发后期(90至100分钟)合成的蛋白降解较慢(约每小时4%)。在所有测试时间,培养基中有无氨基酸或氯霉素时,新合成蛋白的蛋白水解情况相同,但能量代谢抑制剂可消除这种水解。此过程中降解的大多数蛋白分子量大于12000,且不溶于乙酸。