Anunciado-Koza Rea Victoria P, Guntur Anyonya R, Vary Calvin P, Gartner Carlos A, Nowak Madeleine, Koza Robert A
bioRxiv. 2023 Jul 11:2023.07.11.548594. doi: 10.1101/2023.07.11.548594.
Our goal was to isolate purified mitochondria from mouse skeletal muscle using a Percoll density gradient and to assess bioenergetic function and purity via Seahorse Extracellular Flux (XF) Analyses and mass spectrometry.
Mitochondria isolated from murine quadriceps femoris skeletal muscle using a Percoll density gradient method allowed for minimally contaminated preparations with time from tissue harvest to mitochondrial isolation and quantification in about 3-4 hours. Percoll purification from 100-200 mg fresh tissue yielded ∼200-400 ug protein. Mitochondrial bioenergetics evaluated using the Seahorse XFe96 analyzer, a high-throughput respirometry platform, showed optimum mitochondrial input at 500 ng with respiratory control ratio ranging from 3.9-7.1 using various substrates demonstrating a high degree of functionality. Furthermore, proteomic analysis of Percoll-enriched mitochondria isolated from skeletal muscle using this method showed significant enrichment of mitochondrial proteins indicating high sample purity. This study established a methodology that ensures sufficient high quality mitochondria for downstream analyses such as mitochondrial bioenergetics and proteomics.
我们的目标是使用Percoll密度梯度从小鼠骨骼肌中分离纯化线粒体,并通过海马细胞外流量(XF)分析和质谱法评估生物能量功能和纯度。
使用Percoll密度梯度法从小鼠股四头肌骨骼肌中分离的线粒体,从组织收获到线粒体分离和定量,在约3 - 4小时内可获得污染最小的制剂。从100 - 200毫克新鲜组织中进行Percoll纯化可得到约200 - 400微克蛋白质。使用海马XFe96分析仪(一种高通量呼吸测定平台)评估线粒体生物能量学,结果显示在500纳克时线粒体输入最佳,使用各种底物时呼吸控制率在3.9 - 7.1之间,表明具有高度功能性。此外,用该方法从骨骼肌中分离的经Percoll富集的线粒体的蛋白质组学分析显示线粒体蛋白显著富集,表明样品纯度高。本研究建立了一种方法,可确保为线粒体生物能量学和蛋白质组学等下游分析提供足够高质量的线粒体。