Winicov I
Biochim Biophys Acta. 1975 Aug 6;402(1):62-8. doi: 10.1016/0005-2787(75)90370-6.
The synthesis of 5-S RNA was found to be unchanged at both the permissive (33.5 degrees C) and non-permissive (38.5 degrees C) temperatures in a temperature-sensitive Baby Hamster Kidney cell line (BHK 21 ts 422 E) as measured relative to synthesis of 18-S rRNA. The 5-S RNA is shown to be associated with nucleolar ribonucleoprotein particles even though rRNA processing does not yield a functional 28-S rRNA at the non-permissive temperature. The amount of 5-S RNA found associated with the 80-S ribonucleoprotein particles was the same at the permissive and non-permissive temperatures, indicating that an aberrant 5-S RNA contribution to rRNA processing is not a primary cause for the temperature-sensitive lesion of rRNA maturation in this mutant cell line. The amount of 5-S RNA in nucleolar 80-S RNA particles indicated that the association of 5-S RNA with the rRNA precursor particle occurs before the cleavage step at which 32-S precursor RNA is produced.
在一个温度敏感的幼仓鼠肾细胞系(BHK 21 ts 422 E)中,相对于18 - S rRNA的合成,发现5 - S RNA在允许温度(33.5摄氏度)和非允许温度(38.5摄氏度)下的合成均未发生变化。尽管在非允许温度下rRNA加工未产生功能性的28 - S rRNA,但5 - S RNA显示与核仁核糖核蛋白颗粒相关。在允许温度和非允许温度下,与80 - S核糖核蛋白颗粒相关的5 - S RNA量相同,这表明异常的5 - S RNA对rRNA加工的影响不是该突变细胞系中rRNA成熟温度敏感性损伤的主要原因。核仁80 - S RNA颗粒中的5 - S RNA量表明,5 - S RNA与rRNA前体颗粒的结合发生在产生32 - S前体RNA的切割步骤之前。