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结构不同的元件介导电压门控钾通道mRNA的5'-非编码区内的核糖体内部进入。

Structurally distinct elements mediate internal ribosome entry within the 5'-noncoding region of a voltage-gated potassium channel mRNA.

作者信息

Jang Gwendolyn M, Leong Louis E-C, Hoang Lily T, Wang Ping H, Gutman George A, Semler Bert L

机构信息

Department of Microbiology and Molecular Genetics, College of Medicine, University of California, Irvine, California 92697, USA.

出版信息

J Biol Chem. 2004 Nov 12;279(46):47419-30. doi: 10.1074/jbc.M405885200. Epub 2004 Aug 31.

Abstract

The approximately 1.2-kb 5'-noncoding region (5'-NCR) of mRNA species encoding mouse Kv1.4, a member of the Shaker-related subfamily of voltage-gated potassium channels, was shown to mediate internal ribosome entry in cells derived from brain, heart, and skeletal muscle, tissues known to express Kv1.4 mRNA species. We also show that the upstream approximately 1.0 kb and the downstream approximately 0.2 kb of the Kv1.4 5'-NCR independently mediated internal ribosome entry; however, separately, these sequences were less efficient in mediating internal ribosome entry than when together in the complete (and contiguous) 5'-NCR. Using enzymatic structure probing, the 3'-most approximately 0.2 kb was predicted to form three distinct stem-loop structures (stem-loops X, Y, and Z) and two defined single-stranded regions (loops Psi and Omega) in the presence and absence of the upstream approximately 1.0 kb. Although the systematic deletion of sequences within the 3'-most approximately 0.2 kb resulted in distinct changes in expression, enzymatic structure probing indicated that local RNA folding was not completely altered. Structure probing analysis strongly suggested an interaction between stem-loop X and a downstream polypyrimidine tract; however, opposing changes in activity were observed when sequences within these two regions were independently deleted. Moreover, deletions correlating with positive as well as negative changes in expression altered RNase cleavage within stem-loop X, indicating that this structure may be an integral element. Therefore, these findings indicate that Kv1.4 expression is mediated through a complex interplay between many distinct RNA regions.

摘要

编码小鼠Kv1.4(电压门控钾通道中与Shaker相关亚家族的成员)的mRNA种类的约1.2 kb 5'-非编码区(5'-NCR),被证明可介导来自脑、心脏和骨骼肌的细胞(已知表达Kv1.4 mRNA种类的组织)中的核糖体内部进入。我们还表明,Kv1.4 5'-NCR的上游约1.0 kb和下游约0.2 kb独立介导核糖体内部进入;然而,单独来看,这些序列在介导核糖体内部进入方面不如在完整(且连续)的5'-NCR中一起时有效。使用酶促结构探测,预测在存在和不存在上游约1.0 kb的情况下,最3'端的约0.2 kb会形成三个不同的茎环结构(茎环X、Y和Z)和两个确定的单链区域(环Psi和Omega)。尽管对最3'端约0.2 kb内的序列进行系统缺失导致表达有明显变化,但酶促结构探测表明局部RNA折叠并未完全改变。结构探测分析强烈表明茎环X与下游多嘧啶序列之间存在相互作用;然而,当独立缺失这两个区域内的序列时,观察到活性有相反的变化。此外,与表达的正向和负向变化相关的缺失改变了茎环X内的RNase切割,表明该结构可能是一个不可或缺的元件。因此,这些发现表明Kv1.4的表达是通过许多不同RNA区域之间的复杂相互作用介导的。

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