Characterizing sterol defect suppressors uncovers a novel transcriptional signaling pathway regulating zymosterol biosynthesis

被引:28
作者
Germann, M [1 ]
Gallo, C
Donahue, T
Shirzadi, R
Stukey, J
Lang, S
Ruckenstuhl, C
Oliaro-Bosso, S
McDonough, V
Turnowsky, F
Balliano, G
Nickels, JT
机构
[1] Drexel Univ, Coll Med, Dept Biochem & Mol Biol, Philadelphia, PA 19102 USA
[2] Hope Coll, Dept Biol, Holland, MI 49422 USA
[3] Karl Franzens Univ Graz, Inst Mol Biol Biochem & Microbiol, A-8010 Graz, Austria
[4] Univ Turin, Fac Farm, Dipartimento Sci & Tecnol Farmaco, I-10125 Turin, Italy
关键词
D O I
10.1074/jbc.M504978200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
erg26-1(ts) cells harbor defects in the 4 alpha-carboxysterol-C3 dehydrogenase activity necessary for conversion of 4,4-dimethylzymosterol to zymosterol. Mutant cells accumulate toxic 4-carboxysterols and are inviable at high temperature. A genetic screen aimed at cloning recessive mutations remediating the temperature sensitive growth defect has resulted in the isolation of four complementation groups, ets1-4 (erg26-1(ts) temperature sensitive suppressor). We describe the characterization of ets1-1 and ets2-1. Gas chromatography/ mass spectrometry analyses demonstrate that erg26-1(ts) ets1-1 and erg26-1(ts) ets2-1 cells do not accumulate 4-carboxysterols, rather these cells have increased levels of squalene and squalene epoxide, respectively. ets1-1 and ets2-1 cells accumulate these same sterol intermediates. Chromosomal integration of ERG1 and ERG7 at their loci in erg26-1(ts) ets1-1 and erg26-1(ts) ets2-1 mutants, respectively, results in the loss of accumulation of squalene and squalene epoxide, re- accumulation of 4-carboxysterols and cell inviability at high temperature. Enzymatic assays demonstrate that mutants harboring the ets1-1 allele have decreased squalene epoxidase activity, while those containing the ets2-1 allele show weakened oxidosqualene cyclase activity. Thus, ETS1 and ETS2 are allelic to ERG1 and ERG7, respectively. We have mapped mutations within the erg1-1/ ets1-1 (G247D) and erg7-1/ets2-1 (D530N, V615E) alleles that suppress the inviability of erg26-1(ts) at high temperature, and cause accumulation of sterol intermediates and decreased enzymatic activities. Finally using erg1-1 and erg7-1 mutant strains, we demonstrate that the expression of the ERG25/26/27 genes required for zymosterol biosynthesis are coordinately transcriptionally regulated, along with ERG1 and ERG7, in response to blocks in sterol biosynthesis. Transcriptional regulation requires the transcription factors, Upc2p and Ecm22p.
引用
收藏
页码:35904 / 35913
页数:10
相关论文
共 78 条
[51]   Localization of the squalene epoxidase gene (SQLE) to human chromosome region 8q24.1 [J].
Nagai, M ;
Sakakibara, J ;
Wakui, K ;
Fukushima, Y ;
Igarashi, S ;
Tsuji, S ;
Arakawa, M ;
Ono, T .
GENOMICS, 1997, 44 (01) :141-143
[52]  
NES W D, 1989, Steroids, V53, P533, DOI 10.1016/0039-128X(89)90030-5
[53]  
NICKELS JT, 1994, J BIOL CHEM, V269, P11018
[54]   Regulation of the DPP1-encoded diacylglycerol pyrophosphate (DGPP) phosphatase by inositol and growth phase -: Inhibition of DGPP phosphatase activity by CDP-diacylglycerol and activation of phosphatidylserine synthase activity by DGPP [J].
Oshiro, J ;
Rangaswamy, S ;
Chen, XM ;
Han, GS ;
Quinn, JE ;
Carman, GM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (52) :40887-40896
[55]   BIOCHEMICAL AND PHYSIOLOGICAL-EFFECTS OF STEROL ALTERATIONS IN YEAST - A REVIEW [J].
PARKS, LW ;
SMITH, SJ ;
CROWLEY, JH .
LIPIDS, 1995, 30 (03) :227-230
[56]   RELATION BETWEEN STRUCTURE AND RETENTION TIME OF STEROLS IN GAS CHROMATOGRAPHY [J].
PATTERSON, GW .
ANALYTICAL CHEMISTRY, 1971, 43 (10) :1165-+
[57]   Precise quantitative determination of phytosterols, stanols, and cholesterol metabolites in human serum by capillary gas-liquid chromatography [J].
Phillips, KM ;
Ruggio, DM ;
Bailey, JA .
JOURNAL OF CHROMATOGRAPHY B, 1999, 732 (01) :17-29
[58]  
POPJAK G, 1969, METHOD ENZYMOL, V15, P393
[59]   The ubiquitin-proteasome pathway mediates the regulated degradation of mammalian 3-hydroxy-3-methylglutaryl-coenzyme A reductase [J].
Ravid, T ;
Doolman, R ;
Avner, R ;
Harats, D ;
Roitelman, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (46) :35840-35847
[60]   Modulation of ERG25 expression by LDL in vascular cells [J].
Rodriguez, C ;
Raposo, B ;
Martínez-González, J ;
Llorente-Cortés, V ;
Vilahur, G ;
Badimon, L .
CARDIOVASCULAR RESEARCH, 2003, 58 (01) :178-185