用于研究线粒体动力学的具有光激活线粒体的小鼠品系。
Mouse lines with photo-activatable mitochondria to study mitochondrial dynamics.
作者信息
Pham Anh H, McCaffery J Michael, Chan David C
机构信息
Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
出版信息
Genesis. 2012 Nov;50(11):833-43. doi: 10.1002/dvg.22050. Epub 2012 Aug 11.
Many pathological states involve dysregulation of mitochondrial fusion, fission, or transport. These dynamic events are usually studied in cells lines because of the challenges in tracking mitochondria in tissues. To investigate mitochondrial dynamics in tissues and disease models, we generated two mouse lines with photo-activatable mitochondria (PhAM). In the PhAM(floxed) line, a mitochondrially localized version of the photo-convertible fluorescent protein Dendra2 (mito-Dendra2) is targeted to the ubiquitously expressed Rosa26 locus, along with an upstream loxP-flanked termination signal. Expression of Cre in PhAM( floxed) cells results in bright mito-Dendra2 fluorescence without adverse effects on mitochondrial morphology. When crossed with Cre drivers, the PhAM(floxed) line expresses mito-Dendra2 in specific cell types, allowing mitochondria to be tracked even in tissues that have high cell density. In a second line (PhAM(excised) ), the expression of mito-Dendra2 is ubiquitous, allowing mitochondria to be analyzed in a wide range of live and fixed tissues. By using photo-conversion techniques, we directly measured mitochondrial fusion events in cultured cells as well as tissues such as skeletal muscle. These mouse lines facilitate analysis of mitochondrial dynamics in a wide spectrum of primary cells and tissues, and can be used to examine mitochondria in developmental transitions and disease states.
许多病理状态都涉及线粒体融合、裂变或运输的失调。由于在组织中追踪线粒体存在挑战,这些动态事件通常在细胞系中进行研究。为了研究组织和疾病模型中的线粒体动力学,我们构建了两种具有光激活线粒体(PhAM)的小鼠品系。在PhAM(floxed)品系中,光转换荧光蛋白Dendra2的线粒体定位版本(mito-Dendra2)靶向普遍表达的Rosa26位点,同时带有一个上游loxP侧翼的终止信号。在PhAM(floxed)细胞中表达Cre会导致mito-Dendra2发出明亮荧光,且对线粒体形态没有不利影响。当与Cre驱动子杂交时,PhAM(floxed)品系在特定细胞类型中表达mito-Dendra2,即使在细胞密度高的组织中也能追踪线粒体。在第二个品系(PhAM(excised))中,mito-Dendra2的表达是普遍存在的,这使得可以在各种活组织和固定组织中分析线粒体。通过使用光转换技术,我们直接测量了培养细胞以及骨骼肌等组织中的线粒体融合事件。这些小鼠品系有助于分析多种原代细胞和组织中的线粒体动力学,可用于研究发育转变和疾病状态下的线粒体。
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