Center for Global Infectious Disease Research (CGIDR), Seattle Children's Research Institute, Seattle, Washington 98109, USA.
Department of Pediatrics, University of Washington, Seattle, Washington 98195, USA.
RNA. 2023 Oct;29(10):1591-1609. doi: 10.1261/rna.079691.123. Epub 2023 Jul 20.
The gRNA directed U-insertion and deletion editing of mitochondrial mRNAs that is essential in different life-cycle stages for the protozoan parasite is performed by three similar multiprotein catalytic complexes (CCs) that contain the requisite enzymes. These CCs also contain a common set of eight proteins that have no apparent direct catalytic function, including six that have an OB-fold domain. We show here that one of these OB-fold proteins, KREPA3 (A3), has structural homology to other editing proteins, is essential for editing, and is multifunctional. We investigated A3 function by analyzing the effects of single amino acid loss of function mutations, most of which were identified by screening bloodstream form (BF) parasites for loss of growth following random mutagenesis. Mutations in the zinc fingers (ZFs), an intrinsically disordered region (IDR), and several within or near the carboxy-terminal OB-fold domain variably impacted CC structural integrity and editing. Some mutations resulted in almost complete loss of CCs and its proteins and editing, whereas others retained CCs but had aberrant editing. All but a mutation which is near the OB-fold affected growth and editing in BF but not procyclic form (PF) parasites. These data indicate that multiple positions within A3 have essential functions that contribute to the structural integrity of CCs, the precision of editing and the developmental differences in editing between BF and PF stages.
该 gRNA 引导的线粒体 mRNA 的 U-插入和缺失编辑对于原生动物寄生虫在不同生命周期阶段都是必不可少的,由三个类似的多蛋白催化复合物(CC)完成,这些 CC 包含必需的酶。这些 CC 还包含一组八个具有明显直接催化功能的共同蛋白,包括六个具有 OB 折叠结构域的蛋白。我们在这里表明,这些 OB 折叠蛋白之一,KREPA3(A3),与其他编辑蛋白具有结构同源性,对编辑至关重要,并且具有多功能性。我们通过分析单个氨基酸功能丧失突变的影响来研究 A3 的功能,这些突变大多数是通过对随机诱变后的血腔期(BF)寄生虫的生长缺失进行筛选来鉴定的。锌指(ZF)、无规则卷曲(IDR)和羧基末端 OB 折叠结构域内或附近的几个区域中的突变,不同程度地影响了 CC 的结构完整性和编辑。一些突变导致 CC 及其蛋白和编辑几乎完全丧失,而其他突变则保留了 CC,但编辑异常。除了一个接近 OB 折叠的突变外,所有突变都影响 BF 中的生长和编辑,但不影响前鞭毛体(PF)寄生虫。这些数据表明,A3 内的多个位置具有对 CC 结构完整性、编辑精度以及 BF 和 PF 阶段之间编辑的发育差异至关重要的功能。