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COPY NUMBER CONTROL BY A YEAST CENTROMERETSCHUMPER G; CARBON J.1983; GENE; ISSN 0378-1119; NLD; DA. 1983; VOL. 23; NO 2; PP. 221-232; BIBL. 2 P.Article

MULTIPLE GENE LOCI FOR A SINGLE SPECIES OF GLYCINE TRANSFER RIBONUCLEIC ACIDFLECK EW; CARBON J.1975; J. BACTERIOL.; U.S.A.; DA. 1975; VOL. 122; NO 2; PP. 492-501; BIBL. 22REF.Article

NUCLEOTIDE SEQUENCE STUDIES OF NORMAL AND GENETICALLY ALTERED GLYCINE TRANSFER RIBONUCLEIC ACIDS FROM ESCHERICHIA COLI.ROBERTS JW; CARBON J.1975; J. BIOL. CHEM.; U.S.A.; DA. 1975; VOL. 250; NO 14; PP. 5530-5541; BIBL. 33 REF.Article

BIOCHEMICAL CONSTRUCTION AND SELECTION OF HYBRID PLASMIDS CONTAINING SPECIFIC SEGMENTS OF THE ESCHERICHIA COLI GENOMECLARKE L; CARBON J.1975; PROC. NATION. ACAD. SCI. U.S.A.; U.S.A.; DA. 1975; VOL. 72; NO 11; PP. 4361-4365; BIBL. 17 REF.Article

ISOLATION OF A YEAST CENTROMERE AND CONSTRUCTION OF FUNCTIONAL SMALL CIRCULAR CHROMOSOMESCLARKE L; CARBON J.1980; NATURE (LOND.); ISSN 0028-0836; GBR; DA. 1980; VOL. 287; NO 5782; PP. 504-509; BIBL. 23 REF.Article

ISOLATION OF THE CENTROMERE-LINKED CDCLO GENE BY COMPLEMENTATION IN YEASTCLARKE L; CARBON J.1980; PROC. NATION. ACAD. SCI. U.S.A.; USA; DA. 1980; VOL. 77; NO 4; PP. 2173-2177; BIBL. 28 REF.Article

FUNCTION EXPRESSION OF CLONED YEAST DNA IN ESCHERICHIA COLI.RATZKIN B; CARBON J.1977; PROC. NATION. ACAD. SCI. U.S.A.; U.S.A.; DA. 1977; VOL. 74; NO 2; PP. 487-491; BIBL. 21 REF.Article

A COLONY BANK CONTAINING SYNTHETIC COL EL HYBRID PLASMIDS REPRESENTATIVE OF THE ENTIRE E. COLI.CLARKE L; CARBON J.1976; CELL; U.S.A.; DA. 1976; VOL. 9; NO 1; PP. 91-99; BIBL. 22 REF.Article

FRAMESHIFT SUPPRESSION: A NUCLEOTIDE ADDITION IN THE ANTICODON OF A GLYCINE TRANSFER RNARIDDLE DL; CARBON J.1973; NATURE NEW BIOL.; G.B.; DA. 1973; VOL. 242; NO 121; PP. 230-235; BIBL. 35REF.Serial Issue

OVERLAP HYBRIDIZATION SCREENING: ISOLATION AND CHARACTERIZATION OF OVERLAPPING DNA FRAGMENTS SURROUNDING THE LEU 2 GENE ON YEAST CHROMOSOME IIICHINAULT AC; CARBON J.1979; GENE; NLD; DA. 1979; VOL. 5; NO 2; PP. 111-126; BIBL. 1 P.Article

THE NUCLEOTIDE SEQUENCE OF A PRECURSOR TO THE GLYCINE- AND THREONINE-SPECIFIC TRANSFER RIBONUCLEIC ACIDS OF ESCHERICHIA COLI.SHING CHANG; CARBON J.1975; J. BIOL. CHEM.; U.S.A.; DA. 1975; VOL. 250; NO 14; PP. 5542-5555; BIBL. 37 REF.Article

MOLECULAR MECHANISM FOR MISSENSE SUPPRESSION IN E. COLIROBERTS JW; CARBON J.1974; NATURE; G.B.; DA. 1974; VOL. 250; NO 5465; PP. 412-414; BIBL. 21 REF.Article

THE NUCLEOTIDE SEQUENCE OF A THREONINE TRANSFER RIBONUCLEIC ACID FROM ESCHERICHIA COLICLARKE L; CARBON J.1974; J. BIOL. CHEM.; U.S.A.; DA. 1974; VOL. 249; NO 21; PP. 6874-6885; BIBL. 25REF.Article

DIRECT SELECTION PROCEDURE FOR THE ISOLATION OF FUNCTIONAL CENTROMERIC DNACHU LAI HSIAO; CARBON J.1981; PROC. NATL. ACAD. SCI. U.S.A., BIOL. SCI.; ISSN 0273-1134; USA; DA. 1981; VOL. 78; NO 6; PP. 3760-3764; BIBL. 18 REF.Article

HIGH-FREQUENCY TRANSFORMATION OF YEAST BY PLASMIDS CONTAINING THE CLONED YEAST ARG4 GENECHU LAI HSIAO; CARBON J.1979; PROC. NATION. ACAD. SCI. U.S.A.; USA; DA. 1979; VOL. 76; NO 8; PP. 3829-3833; BIBL. 19 REF.Article

BIOCHEMICAL PROCEDURE FOR PRODUCTION OF SMALL DELETIONS IN SIMIAN VIRUS 40 DNACARBON J; SHENK TE; BERG P et al.1975; PROC. NATION. ACAD. SCI. U.S.A.; U.S.A.; DA. 1975; VOL. 72; NO 4; PP. 1392-1396; BIBL. 23REFArticle

CONSTRUCTION AND ANALYSIS OF VIABLE DELETION MUTANTS OF SIMIAN VIRUS 40SHENK TE; CARBON J; BERG P et al.1976; J. VIROL; U.S.A.; DA. 1976; VOL. 18; NO 2; PP. 664-671; BIBL. 22 REF.Article

CONSTRUCTION IN VITRO OF MUTANTS OF SIMIAN VIRUS 40: INSERTION OF A POLY (DA.DT) SEGMENT AT THE HEMOPHILUS PARAINFLUENZA II RESTRICTION ENDONUCLEASE CLEAVAGE SITE.CARBON J; SHENK TE; BERG P et al.1975; J. MOLEC. BIOL.; G.B.; DA. 1975; VOL. 98; NO 1; PP. 1-15; H.T. 1; BIBL. 1 P.Article

ISOLATION AND CHARACTERIZATION OF LARGE TRANSFER RIBONUCLEIC ACID PRECURSORS FROM ESCHERICHIA COLI.ILGEN C; KIRK LL; CARBON J et al.1976; J. BIOL. CHEM.; U.S.A.; DA. 1976; VOL. 251; NO 4; PP. 922-929; BIBL. 27 REF.Article

CONTROL OF EXPRESSION OF A CLONED YEAST (SACCHAROMYCES CEREVISIAE) GENE (TRP 5) BY A BACTERIAL INSERTION ELEMENT (IS2)WALZ A; RATZKIN B; CARBON J et al.1978; PROC. NATION. ACAD. SCI. U.S.A.; USA; DA. 1978; VOL. 75; NO 12; PP. 6172-6176; BIBL. 29 REF.Article

PHYSICAL MAPPING OF THE TRANSFER RNA GENES ON LAMBDA H80DGLYTSU36+WU M; DAVIDSON N; CARBON J et al.1973; J. MOLEC. BIOL.; G.B.; DA. 1973; VOL. 78; NO 1; PP. 23-34; H.T. 8; BIBL. 24REF.Serial Issue

SELECTION PROCEDURE FOR ISOLATION OF CENTROMERE DNAS FROM SACCHAROMYCES CEREVISIAE = METHODE DE SELECTION POUR L'ISOLEMENT DES ADN DE CONTROMERES DE SACCHAROMYCES CEREVISIAECLARKE L; CHU LAI HSIAO; CARBON J et al.1983; METHODS IN ENZYMOLOGY; ISSN 0076-6879; USA; DA. 1983; VOL. 101; PART. C; PP. 300-307; BIBL. DISSEM.Article

ISOLATION AND CHARACTERIZATION OF THE YEAST 3-PHOSPHOGLYCEROKINASE GENE (PGK) BY AN IMMUNOLOGICAL SCREENING TECHNIQUEHITZEMAN RA; CLARKE L; CARBON J et al.1980; J. BIOL. CHEM.; ISSN 0021-9258; USA; DA. 1980; VOL. 255; NO 24; PP. 12073-12080; BIBL. 40 REF.Article

High frequency excision of Ty elements during transformation of yeastTSCHUMPER, G; CARBON, J.Nucleic acids research. 1986, Vol 14, Num 7, pp 2989-3001, issn 0305-1048Article

Yeast centromere DNA is in a unique and highly ordered structure in chromosomes and small circular minichromosomesBLOOM, K. S; CARBON, J.Cell (Cambridge). 1982, Vol 29, Num 2, pp 305-317, issn 0092-8674Article

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