Coleman Timothy P, Tran Quincy, Roesser James R
Department of Biochemistry and Molecular Biophysics, Virginia Commonwealth University, 1101 E. Marshall Street, Richmond, VA 23298, USA.
Biochim Biophys Acta. 2003 Jan 27;1625(2):153-64. doi: 10.1016/s0167-4781(02)00601-2.
The calcitonin/calcitonin gene-related peptide (CGRP) pre-mRNA is alternatively processed in a tissue-specific manner leading to the production of calcitonin mRNA in thyroid C cells and CGRP mRNA in neurons. A candidate calcitonin/CGRP splice regulator (CSR) isolated from rat brain was shown to inhibit calcitonin-specific splicing in vitro. CSR specifically binds to two regions in the calcitonin-specific exon 4 RNA previously demonstrated to function as a bipartate exonic splice enhancer (ESE). The two regions, A and B element, are necessary for inclusion of exon 4 into calcitonin mRNA. A novel RNA footprinting method based on the UV cross-linking assay was used to define the site of interaction between CSR and B element RNA. Base changes at the CSR binding site prevented CSR binding to B element RNA and CSR was unable to inhibit in vitro splicing of pre-mRNAs containing the mutated CSR binding site. When expressed in cells that normally produce predominantly CGRP mRNA, a calcitonin/CGRP gene containing the mutated CSR binding site expressed predominantly calcitonin mRNA. These observations demonstrate that CSR binding to the calcitonin-specific ESE regulates calcitonin/CGRP pre-mRNA splicing.
降钙素/降钙素基因相关肽(CGRP)前体mRNA以组织特异性方式进行可变加工,导致在甲状腺C细胞中产生降钙素mRNA,在神经元中产生CGRP mRNA。从大鼠脑中分离出的一种候选降钙素/CGRP剪接调节因子(CSR)在体外可抑制降钙素特异性剪接。CSR特异性结合降钙素特异性外显子4 RNA中的两个区域,这两个区域先前已被证明可作为双组分外显子剪接增强子(ESE)发挥作用。这两个区域,即A元件和B元件,对于外显子4包含在降钙素mRNA中是必需的。一种基于紫外线交联测定的新型RNA足迹法被用于确定CSR与B元件RNA之间的相互作用位点。CSR结合位点的碱基变化阻止了CSR与B元件RNA的结合,并且CSR无法抑制含有突变CSR结合位点的前体mRNA的体外剪接。当在通常主要产生CGRP mRNA的细胞中表达时,含有突变CSR结合位点的降钙素/CGRP基因主要表达降钙素mRNA。这些观察结果表明,CSR与降钙素特异性ESE的结合调节降钙素/CGRP前体mRNA的剪接。