Cloning, expression, and spectroscopic characterization of Cucumis sativus stellacyanin in its nonglycosylated form

被引:37
作者
Nersissian, AM
Mehrabian, ZB
Nalbandyan, RM
Hart, PJ
Fraczkiewicz, G
Czernuszewicz, RS
Bender, CJ
Peisach, J
Herrmann, RG
Valentine, JS
机构
[1] UNIV CALIF LOS ANGELES,DEPT CHEM & BIOCHEM,LOS ANGELES,CA 90095
[2] ARMENIAN ACAD SCI,INST BIOCHEM,YEREVAN 375044,ARMENIA
[3] UNIV CALIF LOS ANGELES,US DOE,LAB STRUCT BIOL & MOL MED,LOS ANGELES,CA 90095
[4] UNIV HOUSTON,DEPT CHEM,HOUSTON,TX 77204
[5] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT PHYSIOL & BIOPHYS,BRONX,NY 10461
[6] UNIV MUNICH,INST BOT,D-80638 MUNICH,GERMANY
关键词
blue copper protein; cDNA; Cucumis sativus; expression; inclusion bodies; refolding; spectroscopy; stellacyanin;
D O I
10.1002/pro.5560051105
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 cDNA encoding the 182 amino acid long precursor stellacyanin from Cucumis sativus was isolated and characterized. The protein precursor consists of four sequence domains: I, a 23 amino acid hydrophobic N-terminal signal peptide with features characteristic of secretory proteins: II, a 109 amino acid copper-binding domain; III, a 26 amino acid hydroxyproline- and serine-rich peptide characteristic of motifs found in the extensin family, extracellular ar structural glycoproteins found in plant cell walls; and IV, a 22 amino acid hydrophobic extension. Maturation of the protein involves posttranslational processing of domains I and IV. The copper-binding domain (domain II), which shares high sequence identity with other stellacyanins, has been expressed without its carbohydrate attachment sites, refolded from the Escherichia coli inclusion bodies, purified, and characterized by electronic absorption, EPR, ESEEM, and RR spectroscopy. Its spectroscopic properties are nearly identical to those of stellacyanin from the Japanese lacquer tree Rhus vernicifera, the most extensively studied and best characterized stellacyanin, indicating that this domain folds correctly, even in the absence of its carbohydrate moiety. The presence of a hydroxyproline- and serine-rich domain III suggests that stellacyanin may have a function other than that of a diffusible electron transfer protein, conceivably participating in redox reactions localized at the plant cell wall, which are known to occur in response to wounding or infection of the plant.
引用
收藏
页码:2184 / 2192
页数:9
相关论文
共 68 条
[51]   PLASTOCYANIN IS ENCODED BY AN UNINTERRUPTED NUCLEAR GENE IN SPINACH [J].
ROTHER, C ;
JANSEN, T ;
TYAGI, A ;
TITTGEN, J ;
HERRMANN, RG .
CURRENT GENETICS, 1986, 11 (03) :171-176
[52]  
SANDERSLOEHR J, 1993, BIOINORGANIC CHEM CO, P51
[53]   DNA SEQUENCING WITH CHAIN-TERMINATING INHIBITORS [J].
SANGER, F ;
NICKLEN, S ;
COULSON, AR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1977, 74 (12) :5463-5467
[54]   STRUCTURE AND FUNCTION OF PLANT-CELL WALL PROTEINS [J].
SHOWALTER, AM .
PLANT CELL, 1993, 5 (01) :9-23
[55]   SEQUENCE OF THE PRECURSOR OF THE CHLOROPLAST THYLAKOID LUMEN PROTEIN PLASTOCYANIN [J].
SMEEKENS, S ;
DEGROOT, M ;
VANBINSBERGEN, J ;
WEISBEEK, P .
NATURE, 1985, 317 (6036) :456-458
[56]   ELECTRONIC-STRUCTURES OF ACTIVE-SITES IN COPPER PROTEINS - CONTRIBUTIONS TO REACTIVITY [J].
SOLOMON, EI ;
BALDWIN, MJ ;
LOWERY, MD .
CHEMICAL REVIEWS, 1992, 92 (04) :521-542
[57]   ELECTRONIC-STRUCTURE CONTRIBUTIONS TO FUNCTION IN BIOINORGANIC CHEMISTRY [J].
SOLOMON, EI ;
LOWERY, MD .
SCIENCE, 1993, 259 (5101) :1575-1581
[58]  
STUDIER FW, 1990, METHOD ENZYMOL, V185, P60
[59]   PULSED ENDOR STUDY OF THE NATIVE AND HIGH PH PERTURBED FORMS OF THE BLUE COPPER SITE IN STELLACYANIN [J].
THOMANN, H ;
BERNARDO, M ;
BALDWIN, MJ ;
LOWERY, MD ;
SOLOMON, EI .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (15) :5911-5913
[60]   TRANSIENT KINETICS OF REDUCTION OF BLUE COPPER PROTEINS BY FREE FLAVIN AND FLAVODOXIN SEMIQUINONES [J].
TOLLIN, G ;
MEYER, TE ;
CHEDDAR, G ;
GETZOFF, ED ;
CUSANOVICH, MA .
BIOCHEMISTRY, 1986, 25 (11) :3363-3370