Arseneau A J, Gregory K F
Can J Microbiol. 1981 Mar;27(3):304-10. doi: 10.1139/m81-047.
The mechanism of cold sensitivity of Aspergillus fumigatus ON5, a 37 degrees C-sensitive mutant derived from A. fumigatus I-21 (ATCC 32722) by five sequential mutations, was investigated. The rate of in vivo protein synthesis by ON5 was not affected for 2 h following a shift from 45 to 34 degrees C, but the rate of in vivo RNA synthesis dropped almost immediately. The RNA polymerases 2 h following a shift from 45 to 34 degrees C, but the rate of in vivo RNA synthesis dropped almost immediately. The RNA polymerases of ON5 possessed wild-type activity in vitro at a nonpermissive temperature (34 degrees C) indicating that the reduction in the rate of in vivo RNA synthesis did not result from cold sensitivity in transcription, but was possibly a result of rapid feedback inhibition of transcription. Mutant ON5 was not able to produce ribosomes at a nonpermissive temperature as evidenced by the fact that no 3H-labelled amino acids were incorporated into the monosome, large ribosomal subunit, or small ribosomal subunit at 34 degrees C. Ribosomal subunit assembly or ribosomal RNA processing appears, therefore, to be the cold-sensitive cellular function in ON5.
对烟曲霉ON5的冷敏感性机制进行了研究。烟曲霉ON5是由烟曲霉I-21(ATCC 32722)经五次连续突变产生的37℃敏感突变体。从45℃转移到34℃后2小时内,ON5的体内蛋白质合成速率未受影响,但体内RNA合成速率几乎立即下降。从45℃转移到34℃后2小时的RNA聚合酶,但体内RNA合成速率几乎立即下降。ON5的RNA聚合酶在非允许温度(34℃)下在体外具有野生型活性,这表明体内RNA合成速率的降低并非源于转录中的冷敏感性,而是可能是转录快速反馈抑制的结果。突变体ON5在非允许温度下无法产生核糖体,这一事实证明,在34℃时,没有3H标记的氨基酸被掺入单体、大核糖体亚基或小核糖体亚基中。因此,核糖体亚基组装或核糖体RNA加工似乎是ON5中对冷敏感的细胞功能。