鉴定c-myc编码区决定RNA序列和由rnase1样核糖核酸内切酶切割的结构

Alaeddin Tafech, William R. Bennett, Fergil Mills, Chow H. Lee
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引用次数: 13

摘要

c-myc mRNA编码区包含编码区决定核苷酸(CRD) 1705-1792,对调节c-myc mRNA的稳定性至关重要。这部分是由于c-myc CRD RNA易受核糖核酸内切酶的攻击。我们之前纯化并鉴定了一种哺乳动物核糖核酸内切酶,该酶可在体外切割c-myc CRD RNA。该酶初步鉴定为35kda的rnase1样核酸内切酶。为了了解该酶裂解RNA的序列和二级结构要求,我们利用RNase探针技术确定了c-myc CRD RNA nts 1705-1792的二级结构。c-myc CRD RNA的二级结构具有五个茎;其中两个包含4个碱基对(茎I和V),三个包含3个碱基对(茎II, III和IV)。使用c-myc CRD和几个c-myc CRD突变体作为底物进行的内切实验得出以下结论:(I)酶更倾向于在单链区域的UA, CA和UG之间切割;(ii)该酶对UA二核苷酸更具特异性。这些特性进一步将该酶与先前描述的哺乳动物体外切割c-myc mRNA的内切酶区分开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of c-myc coding region determinant RNA sequences and structures cleaved by an RNase1-like endoribonuclease

The coding region of c-myc mRNA encompassing the coding region determinant (CRD) nucleotides (nts) 1705–1792 is critical in regulating c-myc mRNA stability. This is in part due to the susceptibility of c-myc CRD RNA to attack by an endoribonuclease. We have previously purified and characterized a mammalian endoribonuclease that cleaves c-myc CRD RNA in vitro. This enzyme is tentatively identified as a 35 kDa RNase1-like endonuclease. In an effort to understand the sequence and secondary structure requirements for RNA cleavage by this enzyme, we have determined the secondary structure of the c-myc CRD RNA nts 1705–1792 using RNase probing technique. The secondary structure of c-myc CRD RNA possesses five stems; two of which contain 4 base pairs (stems I and V) and three consisting of 3 base pairs (stems II, III, and IV). Endonucleolytic assays using the c-myc CRD and several c-myc CRD mutants as substrates led to the following conclusions: (i) the enzyme prefers to cleave in between the dinucleotides UA, CA, and UG in single-stranded regions; (ii) the enzyme is more specific towards UA dinucleotides. These properties further distinguish the enzyme from previously described mammalian endonuclease that cleaves c-myc mRNA in vitro.

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