Blom D, Breek C K, Speijer D, Muijsers A O, Benne R
Department of Biochemistry, Academic Medical Centre, University of Amsterdam, Meibergdreef 15, 1105 AZ Amsterdam, The Netherlands.
Nucleic Acids Res. 2001 Jul 15;29(14):2950-62. doi: 10.1093/nar/29.14.2950.
In kinetoplastid protozoa, mitochondrial (mt) mRNAs are post-transcriptionally edited by insertion and deletion of uridylate residues, the information being provided by guide (g)RNAs. Currently popular mechanisms for the editing process envisage a series of consecutive 'cut-and-paste' reactions, carried out by a complex RNP machinery. Here we report on the purification, cloning and functional analysis of two gRNA-binding proteins of 28.8 (gBP29) and 26.8 kDa (gBP27) from mitochondria of the insect trypanosome Crithidia fasciculata. gBP29 and gBP27 proved to be similar, Arg + Ala-rich proteins, with pI values of approximately 10.0. gBP27 has no homology to known proteins, but gBP29 is the C.fasciculata orthologue of gBP21 from Trypanosoma brucei, a gRNA-binding protein that associates with active RNA editing complexes. As measured in UV cross-linking assays, His-tagged recombinant gBP29 and gBP27 bind to radiolabelled poly(U) and synthetic gRNAs, while competition experiments suggest a role for the gRNA 3'-(U)-tail in binding to these proteins. Immunoprecipitates of mt extracts generated with antibodies against gBP29 also contained gBP27 and vice versa. The immunoprecipitates further harbored a large proportion of the cellular content of four different gRNAs and of edited and pre-edited NADH dehydrogenase subunit 7 mRNAs, but only small amounts of mt rRNAs. In addition, the bulk of gBP29 and gBP27 co-eluted with gRNAs from gel filtration columns in the high molecular weight range. Together, these results suggest that the proteins are part of a large macromolecular complex(es). We infer that gBP29 and gBP27 are components of the C.fasciculata editing machinery that may interact with gRNAs.
在动质体原生动物中,线粒体(mt)mRNA通过尿苷酸残基的插入和缺失进行转录后编辑,其信息由引导(g)RNA提供。目前流行的编辑过程机制设想了一系列由复杂的核糖核蛋白机制进行的连续“剪切和粘贴”反应。在此,我们报告了从昆虫锥虫克氏锥虫线粒体中纯化、克隆和功能分析两种28.8 kDa(gBP29)和26.8 kDa(gBP27)的gRNA结合蛋白。结果表明,gBP29和gBP27是相似的富含精氨酸和丙氨酸的蛋白,其pI值约为10.0。gBP27与已知蛋白无同源性,但gBP29是布氏锥虫gBP21在克氏锥虫中的直系同源物,gBP21是一种与活性RNA编辑复合体相关的gRNA结合蛋白。如在紫外线交联试验中所测,带有组氨酸标签的重组gBP29和gBP27可与放射性标记的聚(U)和合成gRNA结合,而竞争实验表明gRNA 3' -(U)尾在与这些蛋白结合中起作用。用抗gBP29抗体产生的mt提取物免疫沉淀物中也含有gBP27,反之亦然。免疫沉淀物还含有四种不同gRNA以及编辑和未编辑的NADH脱氢酶亚基7 mRNA的大部分细胞含量,但仅含有少量的mt rRNA。此外,在凝胶过滤柱上,大部分gBP29和gBP27与gRNA在高分子量范围内共同洗脱。这些结果共同表明,这些蛋白是一个大型大分子复合体的一部分。我们推断,gBP29和gBP27是克氏锥虫编辑机制的组成部分,可能与gRNA相互作用。