Department of Cellular Biochemistry, University Medical Center Göttingen, Göttingen, Germany.
Department of Cellular Biochemistry, University Medical Center Göttingen, Göttingen, Germany.
Methods Enzymol. 2024;706:501-518. doi: 10.1016/bs.mie.2024.07.035. Epub 2024 Aug 21.
Mitochondria contain proteins from two genetic origins. Most mitochondrial proteins are encoded in the nuclear genome, translated in the cytosol, and subsequently imported into the different mitochondrial sub-compartments. A small number is encoded in the mitochondrial DNA (mtDNA). The manipulation of the mtDNA gene expression represents a challenge. Here, we present an in vitro approach using morpholinos chemically linked to a precursor protein to silence gene expression in purified human mitochondria. The protocol is demonstrated with a Jac1-morpholino chimera specifically targeting COX1 mRNA. The chimera import and mitochondrial translation requirements are described in a step-by-step procedure, where the dose-dependent effect of reducing COX1 translation is observed. The affinity and specificity of chimera-mRNA binding also show great applicability to purify transcript-associated proteins by using the imported chimera construct as bait for immunoprecipitation. This new strategy opens up the possibility to address mechanistic questions about gene expression and physiology in mitochondria.
线粒体含有来自两种遗传来源的蛋白质。大多数线粒体蛋白由核基因组编码,在细胞质中翻译,然后被导入不同的线粒体亚区室。一小部分是由线粒体 DNA(mtDNA)编码的。mtDNA 基因表达的调控是一个挑战。在这里,我们提出了一种体外方法,使用化学连接到前体蛋白的 morpholino 来沉默纯化的人线粒体中的基因表达。该方案用 Jac1-morpholino 嵌合体来特异性靶向 COX1 mRNA 进行了演示。该嵌合体的导入和线粒体翻译要求在一个分步程序中进行了描述,在该程序中观察到降低 COX1 翻译的剂量依赖性效应。嵌合体-mRNA 结合的亲和力和特异性也显示出很大的适用性,可通过使用导入的嵌合体构建作为免疫沉淀的诱饵来纯化转录相关蛋白。这种新策略为研究线粒体中的基因表达和生理学的机制问题提供了可能。