Greeve J, Lellek H, Rautenberg P, Greten H
Medizinische Klinik, Universitäts-Krankenhaus Eppendorf, Hamburg, Germany.
Biol Chem. 1998 Aug-Sep;379(8-9):1063-73. doi: 10.1515/bchm.1998.379.8-9.1063.
The apolipoprotein (apo) B mRNA can be modified by a posttranscriptional base change from cytidine to uridine at nucleotide position 6666. This editing of apo B mRNA is mediated by a specific enzyme-complex of which only the catalytic subunit APOBEC-1 (apo B mRNA editing enzyme component 1) has been cloned and extensively characterized. In this study, two-hybrid selection in yeast identified hnRNP C1 protein to interact with APOBEC-1. Recombinant hnRNP C1 protein inhibited partially purified apo B mRNA editing activity from rat small intestine and bound specifically to apo B sense RNA around the editing site. The inhibition of apo B mRNA editing by hnRNP C1 protein was not due to masking of the RNA substrate as the mutant protein M104 spanning the RNA-binding domain of hnRNP C1 protein bound strongly to the apo B RNA, but did not inhibit the editing reaction. The apo B mRNA editing enzyme-complex of rat liver nuclear extracts sedimented in sucrose density gradients around 22-27S, but did not contain hnRNP C1 protein that was found exclusively within 40S hnRNP complexes. The removal of 40S hnRNP complexes increased the activity of the 22-27S editing enzyme-complex. Adding back 40S hnRNP complexes with hnRNP C1 protein resulted in an inhibition of the 22-27S apo B mRNA editing enzyme-complex, while addition of 18S fractions had no effect. In conclusion, hnRNP C1 protein identified by two-hybrid selection in yeast is a potent inhibitor of the apo B mRNA editing enzyme-complex. The abundant hnRNP C1 protein, which is contiguously deposited on nascent pre-mRNA during transcription and is involved in spliceosome assembly and mRNA splicing, is a likely regulator of the editing of apo B mRNA which restricts the activity of APOBEC-1 to limited and specific editing events.
载脂蛋白(apo)B信使核糖核酸(mRNA)可在转录后发生碱基变化,即第6666位核苷酸由胞嘧啶转变为尿嘧啶。apo B mRNA的这种编辑由一种特定的酶复合物介导,其中只有催化亚基载脂蛋白B mRNA编辑酶组分1(APOBEC-1)已被克隆并得到广泛表征。在本研究中,酵母双杂交筛选鉴定出不均一核糖核蛋白C1(hnRNP C1)蛋白与APOBEC-1相互作用。重组hnRNP C1蛋白抑制了大鼠小肠部分纯化的apo B mRNA编辑活性,并特异性结合到编辑位点周围的apo B正义核糖核酸上。hnRNP C1蛋白对apo B mRNA编辑的抑制并非由于RNA底物被掩盖,因为跨越hnRNP C1蛋白RNA结合结构域的突变蛋白M104与apo B核糖核酸紧密结合,但不抑制编辑反应。大鼠肝细胞核提取物中的apo B mRNA编辑酶复合物在蔗糖密度梯度中沉降于约22 - 27S处,但不包含仅在40S hnRNP复合物中发现的hnRNP C1蛋白。去除40S hnRNP复合物可增加22 - 27S编辑酶复合物的活性。加入含有hnRNP C1蛋白的40S hnRNP复合物会导致22 - 27S apo B mRNA编辑酶复合物受到抑制,而加入18S组分则无影响。总之,通过酵母双杂交筛选鉴定出的hnRNP C1蛋白是apo B mRNA编辑酶复合物的有效抑制剂。丰富的hnRNP C1蛋白在转录过程中连续沉积在新生的前体mRNA上,并参与剪接体组装和mRNA剪接,它可能是apo B mRNA编辑的调节因子,将APOBEC-1的活性限制在有限的特定编辑事件中。