PEPTIDE SEQUENCES FOR SUCROSE SPLITTING AND GLUCAN BINDING WITHIN STREPTOCOCCUS-SOBRINUS GLUCOSYLTRANSFERASE (WATER-INSOLUBLE GLUCAN SYNTHETASE)

被引:119
作者
ABO, H
MATSUMURA, T
KODAMA, T
OHTA, H
FUKUI, K
KATO, K
KAGAWA, H
机构
[1] OKAYAMA UNIV,SCH DENT,DEPT MICROBIOL,2-5-1 SHIKATACHO,OKAYAMA 700,JAPAN
[2] OKAYAMA UNIV,SCH DENT,DEPT ORAL & MAXILLO FACIAL SURG 2,OKAYAMA 700,JAPAN
[3] OKAYAMA UNIV,SCH DENT,DEPT BIOCHEM,OKAYAMA 700,JAPAN
[4] OKAYAMA UNIV,FAC SCI,DEPT BIOL,OKAYAMA 700,JAPAN
关键词
D O I
10.1128/jb.173.3.989-996.1991
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The gene encoding glucosyltransferase responsible for water-insoluble glucan synthesis (GTF-I) of Streptococcus sobrinus (formerly mutans 6715) was cloned, expressed, and sequenced. A gene bank from S. sobrinus 6715 DNA was constructed in vector pUC18 and screened with anti-GTF-I antibody to detect clones producing GTF-I peptide. Five immunopositive clones were isolated, all of which produced peptides that bound-alpha-1, 6 glucan. GTF-I activity was found in only two large peptides: one stretching over the full length of the GTF-I peptide and composed of about 1,600 amino acid residues (AB1 clone) and the other lacking about 80 N-terminal residues and about 260 C-terminal residues (AB2 clone). A deletion study of the AB2 clone indicated that specific glucan binding, which is essential for water-insoluble glucan synthesis, was lost prior to sucrase activity with an increase in deletion from the 3' end of the GTF-I gene. These results suggest that the GTF-I peptide consists of three segments: that for sucrose splitting (approximately 1,100 residues), that for glucan binding (approximately 240 residues), and that of unknown function (approximately 260 residues), in order from the N terminus. The primary structure of the GTF-I peptide, deduced by DNA sequencing of the AB1 clone, was found to be very similar to that of the homologous protein from another strain of S. sorbrinus.
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页码:989 / 996
页数:8
相关论文
共 33 条
[1]   CLONING OF A STREPTOCOCCUS-MUTANS GLUCOSYLTRANSFERASE GENE CODING FOR INSOLUBLE GLUCAN SYNTHESIS [J].
AOKI, H ;
SHIROZA, T ;
HAYAKAWA, M ;
SATO, S ;
KURAMITSU, HK .
INFECTION AND IMMUNITY, 1986, 53 (03) :587-594
[2]   ORIGIN AND FUNCTION OF THE MULTIPLE EXTRACELLULAR GLUCOSYLTRANSFERASE SPECIES FROM CULTURES OF A SEROTYPE-C STRAIN OF STREPTOCOCCUS-MUTANS [J].
ASEM, KG ;
KENNEY, AC ;
COLE, JA .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1986, 244 (02) :607-618
[3]   SEQUENCE-ANALYSIS OF THE GENE FOR THE GLUCAN-BINDING PROTEIN OF STREPTOCOCCUS-MUTANS INGBRITT [J].
BANAS, JA ;
RUSSELL, RRB ;
FERRETTI, JJ .
INFECTION AND IMMUNITY, 1990, 58 (03) :667-673
[4]   SUPERCOIL SEQUENCING - A FAST AND SIMPLE METHOD FOR SEQUENCING PLASMID DNA [J].
CHEN, EY ;
SEEBURG, PH .
DNA-A JOURNAL OF MOLECULAR & CELLULAR BIOLOGY, 1985, 4 (02) :165-170
[5]  
CIARDI J, 1983, GLUCOSYLTRANSFERASES, P51
[7]   NUCLEOTIDE-SEQUENCE OF A GLUCOSYLTRANSFERASE GENE FROM STREPTOCOCCUS-SOBRINUS MFE28 [J].
FERRETTI, JJ ;
GILPIN, ML ;
RUSSELL, RRB .
JOURNAL OF BACTERIOLOGY, 1987, 169 (09) :4271-4278
[8]  
FUKUI K, 1982, INFECT IMMUN, V37, P1
[9]   IMMUNOCHEMICAL PROPERTIES OF GLUCOSYLTRANSFERASES FROM STREPTOCOCCUS-MUTANS [J].
FUKUI, K ;
KOKEGUCHI, S ;
KATO, K ;
MIYAKE, Y ;
NOGAMI, R ;
MORIYAMA, T .
INFECTION AND IMMUNITY, 1983, 39 (02) :762-766
[10]   CLONING AND EXPRESSION OF 2 STREPTOCOCCUS-MUTANS GLUCOSYLTRANSFERASES IN ESCHERICHIA-COLI K-12 [J].
GILPIN, ML ;
RUSSELL, RRB ;
MORRISSEY, P .
INFECTION AND IMMUNITY, 1985, 49 (02) :414-416