Prachař Jarmil
Laboratory of Tumor Immunology, Cancer Research Institute, Slovak Academy of Sciences, Vlárska 7, 833 91 Bratislava, Slovak Republic.
Gen Physiol Biophys. 2016 Jul;35(3):273-86. doi: 10.4149/gpb_2016008. Epub 2016 May 13.
Mitochondrial nucleoids (hereafter nucleoids) contain genetic information, mitochondrial DNA, prerequisite for mitochondrial functioning, particularly information required for mitochondrial electron transport. To understand nucleoid functioning, it is imperative to know its ultrastructure and dynamics in the context of the actual mitochondrial state. In this study, we document the internal structure, different positions of nucleoids inside the mitochondrial tube and their different morphology. The nucleoid cores appear in section as circular or slightly oval objects ranging from 50 to 100 nm in diameter. They are mainly located in the matrix between cristae inside the mitochondrial tube but they are also frequently found close to the inner mitochondrial surface. In tightly packed form, their interior exhibits sophisticated nucleoprotein regularity. The core surroundings form an electron-lucent thick layer which is probably partitioned into separate chambers. We suggest that the morphology of nucleoids mirrors the mode of energy production, glycolysis versus oxidative phosphorylation. The new high resolution transmission electron microscopy method enabled us to obtain morphological characteristics on yet unpublished level.
线粒体类核(以下简称类核)包含遗传信息,即线粒体DNA,这是线粒体功能的先决条件,尤其是线粒体电子传递所需的信息。为了理解类核的功能,必须了解其在实际线粒体状态下的超微结构和动态变化。在本研究中,我们记录了类核的内部结构、在线粒体管内的不同位置及其不同形态。类核核心在切片中呈现为直径50至100纳米的圆形或略呈椭圆形的物体。它们主要位于线粒体管内嵴之间的基质中,但也经常出现在线粒体内表面附近。以紧密堆积的形式,其内部呈现出复杂的核蛋白规则性。核心周围形成一个电子透明的厚层,可能被分隔成独立的腔室。我们认为类核的形态反映了能量产生的模式,即糖酵解与氧化磷酸化。这种新的高分辨率透射电子显微镜方法使我们能够获得尚未发表的形态学特征。