Coates P J, Jamieson D J, Smart K, Prescott A R, Hall P A
Department of Molecular and Cellular Pathology, University of Dundee, Ninewells Hospital and Medical School, UK.
Curr Biol. 1997 Aug 1;7(8):607-10. doi: 10.1016/s0960-9822(06)00261-2.
Cellular senescence is determined by multiple factors, including the genetic regulation of metabolism and responses to endogenous and exogenous stresses [1-4]. Recent studies implicate a limited number of gene products in elongating lifespan in yeast and Caenorhabditis elegans [2-4]; these include the C, elegans gene cik-1, a central regulator of metabolism [5], and yeast RAS2, which controls the response to ultraviolet irradiation and other stresses [3]. Another gene postulated to effect senescence is PHB1, the yeast homologue of prohibitin [3], a rodent gene initially identified as a potential regulator of growth arrest and tumour suppressor [6-8]. Highly conserved prohibitin homologues have been identified in mammals [9], Drosophila [10], C. elegans [9], plants [11] and yeast. A second mammalian gene, encoding BAP37, a protein with sequence similarity to prohibitin, is thought to be involved in lymphocyte function [9]. Here, we show that the nuclear-encoded mammalian prohibitin and BAP37 proteins are present in mitochondria, are co-expressed, and interact physically with each other. Deletion of the Saccharomyces cerevisiae homologues, PHB1 and PHB2, results in a decreased replicative lifespan and a defect in mitochondrial membrane potential. Our observations highlight the relationship between the metabolic efficiency of cells and the ageing process, and provide evidence for its evolutionary conservation.
细胞衰老由多种因素决定,包括代谢的基因调控以及对内源和外源应激的反应[1-4]。最近的研究表明,在延长酵母和秀丽隐杆线虫寿命方面,有少数基因产物发挥作用[2-4];其中包括秀丽隐杆线虫基因cik-1,它是代谢的核心调节因子[5],以及酵母RAS2,它控制对紫外线照射和其他应激的反应[3]。另一个被推测影响衰老的基因是PHB1,它是酵母中禁阻蛋白的同源物[3],禁阻蛋白是一种最初被鉴定为生长停滞和肿瘤抑制潜在调节因子的啮齿动物基因[6-8]。在哺乳动物[9]、果蝇[10]、秀丽隐杆线虫[9]、植物[11]和酵母中都发现了高度保守的禁阻蛋白同源物。第二个哺乳动物基因编码BAP37,一种与禁阻蛋白序列相似的蛋白质,被认为参与淋巴细胞功能[9]。在这里,我们表明核编码的哺乳动物禁阻蛋白和BAP37蛋白存在于线粒体中,共同表达,并且相互发生物理作用。酿酒酵母同源物PHB1和PHB2的缺失导致复制寿命缩短和线粒体膜电位缺陷。我们的观察结果突出了细胞代谢效率与衰老过程之间的关系,并为其进化保守性提供了证据。