PROPERTIES OF THE ELONGATION-FACTOR 1-ALPHA IN THE THERMOACIDOPHILIC ARCHAEBACTERIUM SULFOLOBUS-SOLFATARICUS

被引:37
作者
MASULLO, M
RAIMO, G
PARENTE, A
GAMBACORTA, A
DEROSA, M
BOCCHINI, V
机构
[1] NAPLES UNIV,DIPARTIMENTO BIOCHIM & BIOTECNOL MED,VIA S PANSINI 5,I-80131 NAPLES,ITALY
[2] NAPLES UNIV,DIPARTIMENTO CHIM ORGAN & BIOL,I-80131 NAPLES,ITALY
[3] NAPLES UNIV,IST BIOCHIM MACROMOLEC,I-80131 NAPLES,ITALY
[4] CNR,IST CHIM MOLEC INTERESSE BIOL,NAPLES,ITALY
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1991年 / 199卷 / 03期
关键词
D O I
10.1111/j.1432-1033.1991.tb16151.x
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
The elongation factor 1-alpha (aEF-1-alpha) was purified to homogeneity from the thermoacidophilic archaebacterium Sulfolobus solfataricus by chromatographic procedures utilising DEAE-Sepharose, hydroxyapatite and FPLC on Mono S. The purified protein binds [H-3]GDP at a 1:1 molar ratio and it is essential for poly(Phe) synthesis in vitro; it also binds GTP but not ATP. These findings indicate that a-EF-1-alpha is the counterpart of the eubacterial elongation factor Tu (EF-Tu). Purified aEF-1-alpha is a monomeric protein with a relative molecular mass of 49 000 as determined by SDS/PAGE and by gel filtration on Sephadex G-100; its isoelectric point is 9.1. The overall amino acid composition did not reveal significant differences when compared with the amino acid composition of eubacterial EF-Tu from either Escherichia coli or Thermus thermophilus, of eukaryotic EF-1-alpha from Artemia salina or of archaebacterial EF-1-alpha from Methanococcus vannielii. The close similarities between the average hydrophobicity and the numbers of hydrogen-bond-forming or non-helix-forming residues suggest that common structural features exist among the factors compared. aEF-1-alpha shows remarkable thermophilic properties, as demonstrated by the rate of [H-3]GDP binding which increases with temperature, reaching a maximum at 95-degrees-C; it is also quite heat-resistant, since after a 6-h exposure at 60-degrees-C and 87-degrees-C the residual [H-3]GDP-binding ability was still 90% and 54% of the control, respectively. The affinity of aEF-1-alpha for GDP and GTP was also evaluated. At 80-degrees-C K'(a) for GDP was about 30-fold higher than K'(a) for GTP; at the same temperature K'(d) for GDP was 1.7-mu-M and K'(d) for GTP was 50-mu-M; these values were 300-fold and 100-fold higher, respectively, than those reported for E. coli EF-Tu at 30-degrees-C; compared to the values at 0-degrees-C of EF-Tu from E. coli and T. thermophilus or EF-1-alpha from A. salina, pig liver and calf brain, smaller differences were observed with eukaryotic factors. At 80-degrees-C k'-1 GDP and k'+1 GDP of aEF-1-alpha were 7.8 min-1 and 4.6 min-1 . mu-M-1, respectively; comparison with the values attributed to E. coli EF-Tu at 30-degrees-C indicates that the dissociation rate constant increases and the association rate constant decreases, thus indicating that the higher K'(d) for GDP of aEF-1-alpha is due to a synchronous alteration of the rates of both the dissociation and the association processes between GDP and aEF-1-alpha. Besides aEF-1-alpha, the other two elongation factors, aEF-2 and aEF-1-beta were also present in S. solfataricus, as suggested by the occurrence of reactions typical of each of them. This allows the hypothesis that in this extremophilic archaebacterium the protein synthesis process follows the same general pattern found in all other living organisms.
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页码:529 / 537
页数:9
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