首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The conserved GTPase center and variable region V9 from Saccharomyces cerevisiae 26S rRNA can be replaced by their equivalents from other prokaryotes or eukaryotes without detectable loss of ribosomal function.
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The conserved GTPase center and variable region V9 from Saccharomyces cerevisiae 26S rRNA can be replaced by their equivalents from other prokaryotes or eukaryotes without detectable loss of ribosomal function.

机译:酿酒酵母26S rRNA的保守GTPase中心和可变区V9可以被其他原核生物或真核生物的等价物取代而不会检测到核糖体功能的丧失。

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摘要

Using the "tagged" rRNA gene system, which allows in vivo mutational analysis of Saccharomyces cerevisiae rRNA, we studied the role of two distinct structural elements of 26S rRNA in ribosome biogenesis and function--namely, the evolutionarily highly conserved "GTPase center" located in domain II and the eukaroyote-specific variable region V9 in domain III. Replacement of the S. cerevisiae GTPase center with its counterpart from Escherichia coli did not affect the assembly of the mutant 26S rRNA into functional (as judged by their polysomal distribution) 60S subunits, indicating that the E. coli GTPase center functions efficiently in the context of the heterologous rRNA. Removal of most of the S. cerevisiae V9 region or replacement of this segment by the equivalent segment from mouse 28S rRNA also did not affect the formation of functional 60S subunits carrying the mutant 26S rRNA. Therefore, the V9 region does not seem to play a role in the biological functioning of the yeast 60S subunits, and these subunits appear to be able to accommodate V9 regions of various size and secondary structure without apparent loss of function.
机译:使用“标记的” rRNA基因系统,可对啤酒酵母rRNA进行体内突变分析,我们研究了26S rRNA的两个不同结构元件在核糖体生物发生和功能中的作用,即位于进化上高度保守的“ GTPase中心”在域II中的“真核生物”和“域III中的真核生物特异可变区V9”。用大肠杆菌中的对应物替换酿酒酵母GTPase中心不会影响突变的26S rRNA组装成功能性60S亚基(通过其多态性分布判断),表明大肠杆菌GTPase中心在上下文中有效发挥功能异源rRNA。从小鼠28S rRNA中除去大部分酿酒酵母V9区或将该片段替换为等同片段也不会影响携带突变26S rRNA的功能性60S亚基的形成。因此,V9区域似乎在酵母60S亚基的生物学功能中不起作用,并且这些亚基似乎能够容纳各种大小和二级结构的V9区域而没有明显的功能丧失。

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