Casteilla L, Blondel O, Klaus S, Raimbault S, Diolez P, Moreau F, Bouillaud F, Ricquier D
Centre de Recherche sur la Nutrition, Centre National de la Recherche Scientifique-Unité Propre 1511, Meudon, France.
Proc Natl Acad Sci U S A. 1990 Jul;87(13):5124-8. doi: 10.1073/pnas.87.13.5124.
The mitochondrial uncoupling protein (UCP) is a membranous proton carrier exclusively synthesized in brown adipocytes. The cDNA for the rat UCP was placed in an expression vector and transfected into mammalian cells. Its expression was tested in transiently transfected CHO cells. In these cells the UCP was detected in mitochondria by using antibodies. Permanent expression of the UCP was achieved in stable transformed CHO cell lines. In these cells the UCP was characterized in mitochondrial membranes, by using antibodies and hydroxyapatite purification. The protein expressed in CHO cells displayed the functional characteristics of brown adipocyte UCP. It induced the uncoupling of respiration in isolated CHO mitochondria. The membrane potential of transformed mitochondria was also significantly lowered, as a result of the proton translocating activity of the UCP. GDP is known to inhibit the proton pathway in brown fat mitochondria. Addition of GDP to CHO mitochondria containing UCP resulted in a recoupling of respiration and an increase in membrane potential. Thus we conclude that functional UCP is expressed in CHO cells and that the insertion of the UCP alone in any mitochondria is sufficient to induce the uncoupling of respiration. This approach should allow studies on the structure-function relationship of the UCP and of several other related mitochondrial carriers.
线粒体解偶联蛋白(UCP)是一种仅在棕色脂肪细胞中合成的膜质子载体。大鼠UCP的cDNA被置于表达载体中并转染到哺乳动物细胞中。在瞬时转染的CHO细胞中检测其表达。在这些细胞中,通过使用抗体在线粒体中检测到UCP。在稳定转化的CHO细胞系中实现了UCP的永久表达。在这些细胞中,通过使用抗体和羟基磷灰石纯化对线粒体膜中的UCP进行了表征。在CHO细胞中表达的蛋白质表现出棕色脂肪细胞UCP的功能特性。它诱导了分离的CHO线粒体中呼吸的解偶联。由于UCP的质子转运活性,转化线粒体的膜电位也显著降低。已知GDP可抑制棕色脂肪线粒体中的质子途径。向含有UCP的CHO线粒体中添加GDP导致呼吸重新偶联和膜电位增加。因此我们得出结论,功能性UCP在CHO细胞中表达,并且仅将UCP插入任何线粒体中就足以诱导呼吸解偶联。这种方法应该有助于对UCP和其他几种相关线粒体载体的结构 - 功能关系进行研究。