Ricquier D, Miroux B, Cassard-Doulcier A M, Lévi-Meyrueis C, Gelly C, Raimbault S, Bouillaud F
Centre de Recherche sur l'Endocrinologie Moléculaire et le Développement, Centre National de la Recherche Scientifique-Unit 9078, Meudon, France.
J Bioenerg Biomembr. 1999 Oct;31(5):407-18. doi: 10.1023/a:1005488105076.
This review is primarily focused on the contribution of our laboratory to study of the mitochondrial uncoupling UCPs. The initial stage was the description of a 32-kDa membranous protein specifically induced in brown adipose tissue mitochondria of cold-adapted rats. This protein was then shown by others to be responsible for brown fat thermogenesis and was referred to as the uncoupling protein-UCP (recently renamed UCP1). cDNA and genomic clones of UCP1 were isolated and used to investigate the topology and functional organization of the protein in the membrane and the mechanisms of control of UCP1 gene transcription. Orientation of the transmembrane fragments was proposed and specific amino acid residues involved in the inhibition of UCP1 by purine nucleotides were identified in recombinant yeast. A potent enhancer mediating the response of the UCP1 gene to retinoids and controlling the specific transcription in brown adipocytes was identified using transgenic mice. More recently, we identified UCP2, an UCP homolog widely expressed in human and rodent tissues we also collaborated to characterize the plant UCP. Although the biochemical activities and physiological roles of the novel UCPs are not well understood, these recent data stimulate research on mitochondrial carriers, mitochondrial bioenergetics, and energy expenditure.
本综述主要聚焦于我们实验室对线粒体解偶联蛋白(UCPs)研究的贡献。最初阶段是对一种在适应寒冷的大鼠棕色脂肪组织线粒体中特异性诱导产生的32 kDa膜蛋白的描述。随后其他人证明该蛋白负责棕色脂肪的产热,并将其称为解偶联蛋白-UCP(最近重新命名为UCP1)。UCP1的cDNA和基因组克隆被分离出来,并用于研究该蛋白在膜中的拓扑结构和功能组织以及UCP1基因转录的调控机制。提出了跨膜片段的方向,并在重组酵母中鉴定出参与嘌呤核苷酸对UCP1抑制作用的特定氨基酸残基。利用转基因小鼠鉴定出一种介导UCP1基因对视黄酸的反应并控制棕色脂肪细胞中特异性转录的强效增强子。最近,我们鉴定出UCP2,一种在人和啮齿动物组织中广泛表达的UCP同源物,我们还合作对植物UCP进行了表征。尽管新型UCPs的生化活性和生理作用尚未完全了解,但这些最新数据激发了对线粒体载体、线粒体生物能量学和能量消耗的研究。