Toniolo D, Basilico C
Biochim Biophys Acta. 1976 Apr 2;425(4):409-18. doi: 10.1016/0005-2787(76)90005-8.
The processing of ribosomal RNA has been studied in a temperature sensitive mutant of the Syrian hamster cell line BHK 21. At 39 degrees C, these cells are unable to synthesize 28S RNA, and 60S ribosomal subunits, while 18S RNA, and 40S subunits are produced at both temperatures. At 39 degrees C the 45S RNA precursor is transcribed and processed as in wild type cells. The processing of the RNA precursors becomes defective after the cleavage of the 41S RNA, and the separation of the 18S and 28S RNAs sequences in two different RNA molecules. The 36S RNA precursor, which is always present in very small quantity in the nucleoli of wild type cells and of the mutant at 33 degrees C, is found in very large amounts in the mutant at 39 degrees C. The 36S RNA can be, however, slowly processed to 32S RNA. The 32S RNA cannot be processed at 39 degrees C, and it is degraded soon after its formation. Only a small proportion accumulates in the nucleoli. The 32S RNA synthesized at 39 degrees C cannot be processed to 28S RNA upon shift to the permissive temperature, even when the processing of the newly synthesized rRNA has returned to normal. The data suggest that the 36S and 32S RNAs are contained in aberrant ribonucleoprotein particles, leading to a defective processing of the particles as a whole.
已在叙利亚仓鼠细胞系BHK 21的一个温度敏感突变体中研究了核糖体RNA的加工过程。在39℃时,这些细胞无法合成28S RNA和60S核糖体亚基,而18S RNA和40S亚基在两个温度下均能产生。在39℃时,45S RNA前体的转录和加工与野生型细胞相同。在41S RNA切割以及18S和28S RNA序列在两个不同RNA分子中分离后,RNA前体的加工出现缺陷。36S RNA前体在野生型细胞和33℃时的突变体核仁中一直以非常少量存在,但在39℃时的突变体中大量存在。然而,36S RNA可以缓慢加工成32S RNA。32S RNA在39℃时无法加工,形成后很快就会降解。只有一小部分在核仁中积累。即使新合成的rRNA加工已恢复正常,在39℃合成的32S RNA在转移到允许温度时也无法加工成28S RNA。数据表明,36S和32S RNA包含在异常的核糖核蛋白颗粒中,导致整个颗粒的加工存在缺陷。