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ANTISERA TO POLY(A). POLY(U). POLY(I) CONTAIN ANTIBODY SUBPOPULATIONS SPECIFIC FOR DIFFERENT ASPECTS OF THE TRIPLE HELIX.RAINEN LC; STOLLAR BD.1977; BIOCHEMISTRY; U.S.A.; DA. 1977; VOL. 16; NO 9; PP. 2003-2007; BIBL. 23 REF.Article

COMPLEXES FORMED BY (PYRIMIDINE)N (PURINE)N DNAS ON LOWERING THE PH ARE THREE-STRANDEDLEE JS; JOHNSON DA; MORGAN AR et al.1979; NUCLEIC ACIDS RES.; GBR; DA. 1979; VOL. 6; NO 9; PP. 3073-3091; BIBL. 26 REF.Article

ISOLATION AND PARTIAL CHARACTERIZATION OF A NEW HUMAN COLLAGEN WITH AN EXTENDED TRIPLE-HELICAL STRUCTURAL DOMAINBENTZ H; MORRIS NP; MURRAY LW et al.1983; PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA. BIOLOGICAL SCIENCES; ISSN 0273-1134; USA; DA. 1983; VOL. 80; NO 11; PP. 3168-3172; BIBL. 39 REF.Article

PROTEOLYTIC ENZYMES AS PROBE FOR THE TRIPLE-HELICAL CONFORMATION OF PROCOLLAGENBRUCKNER P; PROCKOP DJ.1981; ANAL. BIOCHEM.; ISSN 0003-2697; USA; DA. 1981; VOL. 110; NO 2; PP. 360-368; BIBL. 34 REF.Article

DESIGNATION OF SEQUENCES INVOLVED IN THE "COILED-COIL" INTERDOMAINAL CONNECTIONS IN FIBRINOGEN: CONSTRUCTION OF AN ATOMIC SCALE MODEL.DOOLITTLE RF; GOLDBAUM DM; DOOLITTLE LR et al.1978; J. MOLEC. BIOL.; G.B.; DA. 1978; VOL. 120; NO 2; PP. 311-325; BIBL. 1 P.Article

QUANTUM-MECHANICAL STUDY OF MODEL MOLECULES IN RELATION TO COLLAGEN STRUCTURE. II: (GLY-PHE-PRO) AND (GLY-PRO-PHE) REPEATING UNITSCABROL D; BROCH H; VASILESCU D et al.1981; BIOPOLYMERS; ISSN 0006-3525; USA; DA. 1981; VOL. 20; NO 2; PP. 269-282; BIBL. 20 REF.Article

ADDITION OF MANNOSE TO BOTH THE AMINO- AND CARBOXY-TERMINAL PROPEPTIDES OF TYPE II PROCOLLAGEN OCCURS WITHOUT FORMATION OF A TRIPLE HELIXGUZMAN NA; GRAVES PN; PROCKOP DJ et al.1978; BIOCHEM. BIOPHYS. RES. COMMUNIC.; USA; DA. 1978; VOL. 84; NO 3; PP. 691-698; BIBL. 33 REF.Article

SYNTHESIS AND CHARACTERIZATION OF AN IONIZABLE POLYHEXAPEPTIDE COLLAGEN MODEL.SIGLER GF; MCMILLIN CR; WALTON AG et al.1976; BIOPOLYMERS; U.S.A.; DA. 1976; VOL. 15; NO 10; PP. 2005-2024; BIBL. 21 REF.Article

TRIPLE HELICES FORMED BY POLYURIDYLIC ACID WITH SOME AMINODEOXYADENOSINE DERIVATIVES.GIBBS DE; ORGEL LE.1976; J. MOLEC. EVOL.; GERM.; DA. 1976; VOL. 8; NO 1; PP. 55-58; BIBL. 4 REF.Article

INTESTINAL BASEMENT MEMBRANE OF ASCARIS SUUM. PROPERTIES OF THE COLLAGENOUS DOMAINCHUNG HO HUNG; BUTKOWSKI RJ; HUDSON GB et al.1980; J. BIOL. CHEM.; USA; DA. 1980; VOL. 255; NO 10; PP. 4964-4971; BIBL. 35 REF.Article

IDENTIFICATION OF A NEW BASEMENT MEMBRANE COLLAGEN BY THE AID OF A LARGE FRAGMENT RESISTANT TO BACTERIAL COLLAGENASETIMPL R; RISTELI J; BACHINGER HP et al.1979; F.E.B.S. LETTERS; NLD; DA. 1979; VOL. 101; NO 2; PP. 265-268; BIBL. 14 REF.Article

ANALYSIS OF PERIODIC PATTERNS IN AMINO ACID SEQUENCES: COLLAGEN.MCLACHLAN AD.1977; BIOPOLYMERS; U.S.A.; DA. 1977; VOL. 16; NO 6; PP. 1271-1297; BIBL. 43 REF.Article

CHARACTERIZATION OF A HIGHLY SOLUBLE COLLAGENOUS MOLECULE ISOLATED FROM CHICKEN HYALINE CARTILAGEREESE CA; WIEDEMANN H; KUEHN K et al.1982; BIOCHEMISTRY (EAST.); ISSN 0006-2960; USA; DA. 1982; VOL. 21; NO 5; PP. 826-830; BIBL. 11 REF.Article

DISCONTINUITIES IN THE TRIPLE HELICAL SEQUENCE GLY-X-Y OF BASEMENT MEMBRANE (TYPE IV) COLLAGENSCHUPPAN D; TIMPL R; GLANVILLE RW et al.1980; F.E.B.S. LETTERS; NLD; DA. 1980; VOL. 115; NO 2; PP. 297-300; BIBL. 24 REF.Article

KINETIC ANALYSIS OF THE ANNEALING PERIOD IN THE FORMATION OF THE POLY(A) 2 POLY(U) TRIPLE HELIX.SPODHEIM M; NEUMANN E.1977; BIOPOLYMERS; U.S.A.; DA. 1977; VOL. 16; NO 2; PP. 289-298; BIBL. 26 REF.Article

REACTIONS OF ADENOSINE 5'-PHOSPHORIMIDAZOLIDE WITH ADENOSINE ANALOGS ON A POLYURIDYLIC ACID TEMPLATE. THE UNIQUENESS OF THE 2'-3' UNSUBSTITUTED BETA -RIBOSYL SYSTEM.LOHRMANN R; ORGEL LE.1977; J. MOLEC. BIOL.; G.B.; DA. 1977; VOL. 113; NO 1; PP. 193-198; BIBL. 17 REF.Article

SINGLE-STRANTED POLY (DEOXYGUANYLIC ACID) ASSOCIATES INTO DOUBLE- AND TRIPLE-STRANDED STRUCTURESDUGAICZYK A; ROBBERSON DL; ULLRICH A et al.1980; BIOCHEMISTRY (EAST.); ISSN 0006-2960; USA; DA. 1980; VOL. 19; NO 25; PP. 5869-5873; BIBL. 15 REF.Article

STEREOCHEMICAL RESTRICTIONS ON THE OCCURENCE OF AMINO ACID RESIDUES IN THE COLLAGEN STRUCTURE.BANSAL M.1977; INTERNATION. J. PEPT. PROT. RES.; DENM.; DA. 1977; VOL. 9; NO 3; PP. 224-234; BIBL. 27 REF.Article

MOLECULAR ASSEMBLY IN COLLAGENTRAUB W.1978; F.E.B.S. LETTERS; NLD; DA. 1978; VOL. 92; NO 1; PP. 114-120; BIBL. 25 REF.Article

FOURIER TRANSFORM OF THE COLLAGEN TRIPLE-HELICAL STRUCTURE AND ITS SIGNIFICANCE.BANSAL M.1977; PRAMANA; INDIA; DA. 1977; VOL. 9; NO 4; PP. 339-347; BIBL. 19 REF.Article

Oligonucleotides tethered via nucleic bases. A potential new set of compounds for alternate strand triple-helix formationASSELINE, U; NGUYEN THANH THUONG.Tetrahedron letters. 1993, Vol 34, Num 26, issn 0040-4039, 4114, 4173-4176 [5 p.]Article

Effect of intermolecular triplex formation on the yield of cyclobutane photodimers in DNAMALKOV, V. A; SOYFER, V. N; FRANK-KAMENETSKII, M. D et al.Nucleic acids research. 1992, Vol 20, Num 18, pp 4889-4895, issn 0305-1048Article

Structure of d(T)n.d(A)n.d(T)n : the DNA triple helix has B-form geometry with C2'-endo sugar puckerHOWARD, F. B; TODD MILES, H; KELIANG LIU et al.Biochemistry (Easton). 1992, Vol 31, Num 44, pp 10671-10677, issn 0006-2960Article

Type I collagen segment long spacing banding patterns: improved correlation with models using a variable h-spacingBENDER, E; SILVER, F. H.Biopolymers. 1985, Vol 24, Num 12, pp 2195-2205, issn 0006-3525Article

7,8-dihydro-8-oxoadenine as a replacement for cytosine in the third strand of triple helices. Triplex formation without hypochromicityJETTER, M. C; HOBBS, F. W.Biochemistry (Easton). 1993, Vol 32, Num 13, pp 3249-3254, issn 0006-2960Article

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