Gelperin D, Weigle J, Nelson K, Roseboom P, Irie K, Matsumoto K, Lemmon S
Department of Molecular Biology and Microbiology, Case Western Reserve University, Cleveland, OH 44106-4960, USA.
Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11539-43. doi: 10.1073/pnas.92.25.11539.
Deletion of the clathrin heavy-chain gene, CHC1, in the budding yeast Saccharomyces cerevisiae results in growth, morphological, and membrane trafficking defects, and in some strains chc1-delta is lethal. A previous study identified five genes which, in multicopy, rescue inviable strains of Chc- yeast. Now we report that one of the suppressor loci, BMH2/SCD3, encodes a protein of the 14-3-3 family. The 14-3-3 proteins are abundant acidic proteins of approximately 30 kDa with numerous isoforms and a diverse array of reported functions. The Bmh2 protein is > 70% identical to the mammalian epsilon-isoform and > 90% identical to a previously reported yeast 14-3-3 protein encoded by BMH1. Single deletions of BMH1 or BMH2 have no discernable phenotypes, but deletion of both BMH1 and BMH2 is lethal. High-copy BMH1 also rescues inviable strains of Chc- yeast, although not as well as BMH2. In addition, the slow growth of viable strains of Chc- yeast is further impaired when combined with single bmh mutations, often resulting in lethality. Overexpression of BMH genes also partially suppresses the temperature sensitivity of the cdc25-1 mutant, and high-copy TPK1, encoding a cAMP-dependent protein kinase, restores Bmh- yeast to viability. High-copy TPK1 did not rescue Chc- yeast. These genetic interactions suggest that budding-yeast 14-3-3 proteins are multifunctional and may play a role in both vesicular transport and Ras signaling pathways.
在出芽酵母酿酒酵母中,网格蛋白重链基因CHC1的缺失会导致生长、形态及膜运输缺陷,并且在某些菌株中,chc1 - Δ是致死的。先前的一项研究鉴定出了五个基因,这些基因以多拷贝形式存在时可拯救Chc - 酵母的不可存活菌株。现在我们报告,其中一个抑制位点BMH2/SCD3编码一种14 - 3 - 3家族的蛋白质。14 - 3 - 3蛋白质是丰富的酸性蛋白质,分子量约为30 kDa,有多种异构体,并且具有各种各样已报道的功能。Bmh2蛋白与哺乳动物ε异构体的同源性大于70%,与先前报道的由BMH1编码的酵母14 - 3 - 3蛋白的同源性大于90%。单独缺失BMH1或BMH2没有可识别的表型,但同时缺失BMH1和BMH2是致死的。高拷贝的BMH1也能拯救Chc - 酵母的不可存活菌株,尽管效果不如BMH2。此外,Chc - 酵母的可存活菌株与单个bmh突变结合时,其缓慢生长会进一步受损,常常导致致死性。BMH基因的过表达也部分抑制了cdc25 - 1突变体的温度敏感性,并且编码cAMP依赖性蛋白激酶的高拷贝TPK1可恢复Bmh - 酵母的活力。高拷贝TPK1不能拯救Chc - 酵母。这些遗传相互作用表明,出芽酵母14 - 3 - 3蛋白具有多种功能,可能在囊泡运输和Ras信号通路中都发挥作用。