SYNTHESIS AND CHARACTERIZATION OF DESULFOVIBRIO-GIGAS RUBREDOXIN AND RUBREDOXIN FRAGMENTS

被引:11
作者
CHRISTENSEN, HEM
HAMMERSTADPEDERSEN, JM
HOLM, A
IVERSEN, G
JENSEN, MH
ULSTRUP, J
机构
[1] TECH UNIV DENMARK,DEPT CHEM A,DK-2800 LYNGBY,DENMARK
[2] NATL UNIV SINGAPORE,INST CELL & MOLEC BIOL,SINGAPORE,SINGAPORE
[3] ROYAL VET & AGR UNIV,DK-1870 FREDERIKSBERG,DENMARK
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1994年 / 224卷 / 01期
关键词
D O I
10.1111/j.1432-1033.1994.tb19999.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 52-residue Desulfovibrio gigas rubredoxin peptide chain has been synthesized and a procedure for chain folding around iron(II) developed. The folded, stable synthetic rubredoxin can be subjected to purification, and reversibly oxidized and reduced. Ultraviolet/visible absorption and CD spectra of both forms show all the same features as native D. gigas rubredoxin, and the symmetric and asymmetric Fe-S stretching bands in the resonance Raman spectrum can be identified. In addition, the matrix-assisted laser desorption mass spectrum of a peptide sample exposed to trace amounts of iron is dominated by a peak at 5735Da very close to the value for the calculated molecular mass. Details in the ultraviolet/visible bandshape and mass spectrum, however, indicate remaining impurities. In comparison, a previously synthesized 25-residue rubredoxin fragment with the non-conserved positions 13-35 and 51-52 omitted and Va15-Glu50 anchored via glycine folds gives the correct molecular mass and ultraviolet/visible spectrum, but is much more labile than the 52-residue protein. This shows that non-conserved residues are crucial in protein folding and that chemical metalloprotein synthesis offers alternative prospects to microbiological protein engineering.
引用
收藏
页码:97 / 101
页数:5
相关论文
共 40 条
[1]   SPECTROSCOPIC INVESTIGATION OF RUBREDOXIN AND FERREDOXIN [J].
ATHERTON, NM ;
GARBETT, K ;
GILLARD, RD ;
MASON, R ;
MAYHEW, SJ ;
PEEL, JL ;
STANGROOM, JE .
NATURE, 1966, 212 (5062) :590-+
[2]   A SYNTHETIC PEPTIDE ENCOMPASSING THE BINDING-SITE OF THE 2ND ZINC ATOM (THE STRUCTURAL ZINC) OF ALCOHOL-DEHYDROGENASE [J].
BERGMAN, T ;
JORNVALL, H ;
HOLMQUIST, B ;
VALLEE, BL .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1992, 205 (02) :467-470
[3]   DETERMINANTS OF PROTEIN HYPERTHERMOSTABILITY - PURIFICATION AND AMINO-ACID-SEQUENCE OF RUBREDOXIN FROM THE HYPERTHERMOPHILIC ARCHAEBACTERIUM PYROCOCCUS-FURIOSUS AND SECONDARY STRUCTURE OF THE ZINC ADDUCT BY NMR [J].
BLAKE, PR ;
PARK, JB ;
BRYANT, FO ;
AONO, S ;
MAGNUSON, JK ;
ECCLESTON, E ;
HOWARD, JB ;
SUMMERS, MF ;
ADAMS, MWW .
BIOCHEMISTRY, 1991, 30 (45) :10885-10895
[4]   AMINO-ACID SEQUENCE OF RUBREDOXIN FROM SULFATE REDUCING BACTERIUM, DESULFOVIBRIO GIGAS [J].
BRUSCHI, M .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1976, 70 (02) :615-621
[5]   SYNTHESIS AND CHARACTERIZATION OF A 25-RESIDUE RUBREDOXIN(II)-LIKE METALLOPROTEIN AND ITS VALINE-LEUCINE MUTANT [J].
CHRISTENSEN, HEM ;
HAMMERSTADPEDERSEN, JM ;
HOLM, A ;
ROEPSTORFF, P ;
ULSTRUP, J ;
VORM, O ;
OSTERGARD, S .
FEBS LETTERS, 1992, 312 (2-3) :219-222
[6]   RESONANCE RAMAN-SPECTRA OF RUBREDOXIN - NEW ASSIGNMENTS AND VIBRATIONAL COUPLING MECHANISM FROM FE-54 FE-56 ISOTOPE SHIFTS AND VARIABLE-WAVELENGTH EXCITATION [J].
CZERNUSZEWICZ, RS ;
LEGALL, J ;
MOURA, I ;
SPIRO, TG .
INORGANIC CHEMISTRY, 1986, 25 (05) :696-700
[7]   REFINEMENT OF RUBREDOXIN FROM DESULFOVIBRIO-VULGARIS AT 1.0-A WITH AND WITHOUT RESTRAINTS [J].
DAUTER, Z ;
SIEKER, LC ;
WILSON, KS .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1992, 48 :42-59
[8]   X-RAY CRYSTAL-STRUCTURES OF THE OXIDIZED AND REDUCED FORMS OF THE RUBREDOXIN FROM THE MARINE HYPERTHERMOPHILIC ARCHAEBACTERIUM PYROCOCCUS-FURIOSUS [J].
DAY, MW ;
HSU, BT ;
JOSHUATOR, L ;
PARK, JB ;
ZHOU, ZH ;
ADAMS, MWW ;
REES, DC .
PROTEIN SCIENCE, 1992, 1 (11) :1494-1507
[9]   TOTAL SYNTHESIS OF HORSE HEART CYTOCHROME-C [J].
DIBELLO, C ;
VITA, C ;
GOZZINI, L .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1992, 183 (01) :258-264
[10]   FOLDING OF PEPTIDE-FRAGMENTS COMPRISING THE COMPLETE SEQUENCE OF PROTEINS - MODELS FOR INITIATION OF PROTEIN FOLDING .2. PLASTOCYANIN [J].
DYSON, HJ ;
SAYRE, JR ;
MERUTKA, G ;
SHIN, HC ;
LERNER, RA ;
WRIGHT, PE .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 226 (03) :819-835