Zwieb C, Ullu E
Nucleic Acids Res. 1986 Jun 11;14(11):4639-57. doi: 10.1093/nar/14.11.4639.
The human 7SL RNA component of the signal recognition particle can be separated into four major conformers by nondenaturing polyacrylamide gel electrophoresis. We have investigated what sequences give 7SL RNA the property to exist in different conformations. The human 7SL gene 7L30.1 was mutagenized using the random linker insertion approach and twelve mutant genes carrying alterations in the central domain of 7SL RNA were characterized. Mutant RNAs were produced by in vitro transcription of the various templates and their electrophoretic behaviour was determined. Bases between positions 98 and 133 as well as 206 and 251 proved to be necessary for the 7SL RNA to be able to exist in alternative conformations, while changes at the positions 85 to 97, 144 to 166 and 252 to 266 did not abolish this property. The dynamic sequences are located in the "central T" in the secondary structure of the 7SL RNA. They are phylogenetically conserved and include bases which are homologeous to 5S ribosomal RNA. A dynamic core structure composed of the dynamic parts of the 7SL RNA is suggested. An attempt was made to define the different conformers present in the wild-type 7SL RNA. These alternative configurations could play a functional role during the initial stage of protein translocation across the membrane of the endoplasmic reticulum.
信号识别颗粒的人类7SL RNA组分可通过非变性聚丙烯酰胺凝胶电泳分离为四种主要构象体。我们研究了哪些序列赋予7SL RNA以不同构象存在的特性。使用随机接头插入方法对人类7SL基因7L30.1进行诱变,并对12个在7SL RNA中央结构域发生改变的突变基因进行了表征。通过对各种模板进行体外转录产生突变RNA,并测定其电泳行为。事实证明,98至133位以及206至251位之间的碱基对于7SL RNA能够以不同构象存在是必需的,而85至97位、144至166位以及252至266位的变化并未消除这一特性。动态序列位于7SL RNA二级结构的“中央T”中。它们在系统发育上是保守的,并且包括与5S核糖体RNA同源的碱基。提出了一种由7SL RNA的动态部分组成的动态核心结构。我们试图确定野生型7SL RNA中存在的不同构象体。这些不同的构型可能在内质网膜蛋白转运的初始阶段发挥功能作用。