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Mitochondria frozen with trehalose retain a number of biological functions and preserve outer membrane integrity.

机译:用海藻糖冷冻的线粒体保留了许多生物学功能并保留了外膜的完整性。

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In apoptosis, Bcl-2-family proteins regulate the barrier function of the mitochondrial outer membrane (MOM), controlling the release of proapoptotic proteins from the intermembrane space into the cytoplasm. This process can be studied in vitro with freshly isolated mouse liver mitochondria. Unfortunately, mitochondria frozen/thawed in standard sucrose-mannitol buffers become leaky and useless for apoptosis research. However, here we show that mitochondria frozen in buffer containing the sugar, trehalose, maintained MOM integrity and responsiveness to Bcl-2-family proteins, much like fresh mitochondria. Trehalose also preserved ultrastructure, as well as biological functions such as ATP synthesis, calcium-induced swelling, transmembrane potential, and the import and processing of protein precursors. However, bioenergetic function was somewhat reduced. Thus, trehalose-frozen mitochondria retained most of the biological features of mitochondria including MOM integrity. Although not ideal for studies involving bioenergetics, this method will facilitate research on apoptosis and other mitochondrial functions that rely on an intact MOM.
机译:在凋亡中,Bcl-2家族蛋白调节线粒体外膜(MOM)的屏障功能,控制促凋亡蛋白从膜间空间释放到细胞质中。可以使用新鲜分离的小鼠肝脏线粒体进行体外研究。不幸的是,在标准蔗糖-甘露醇缓冲液中冷冻/解冻的线粒体渗漏了,无法用于凋亡研究。但是,在这里我们显示,冻结在含有糖,海藻糖的缓冲液中的线粒体,就像新鲜的线粒体一样,保持了MOM完整性和对Bcl-2家族蛋白的响应性。海藻糖还保留了超微结构以及生物学功能,例如ATP合成,钙诱导的肿胀,跨膜电位以及蛋白质前体的进口和加工。但是,生物能功能有所降低。因此,海藻糖冻结的线粒体保留了线粒体的大多数生物学特征,包括MOM完整性。尽管对于涉及生物能学的研究不是理想的方法,但该方法将有助于研究依赖完整MOM的细胞凋亡和其他线粒体功能。

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