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γ and γ' chains of human fibrinogen are produced by alternative mRNA processingCHUNG, D. W; DAVIE, E. W.Biochemistry (Easton). 1984, Vol 23, Num 18, pp 4232-4236, issn 0006-2960Article

Polymorphisme clinique de la «maladie» des chaînes lourdes gamma = Clinical polymorphism of heavy chain diseaseSELIGMANN, M; FERMAND, J.-P; BROUET, J.-C et al.Actualités hématologiques. 1985, Num 19, pp 22-27, issn 0567-8757Article

Alternative sites of transcription initiation upstream of the canonical capsite in human ψ-globin and β-globin genesGRINDLAY, G. J; LANYON, W. G; ALLAN, M et al.Nucleic acids research. 1984, Vol 12, Num 4, pp 1811-1820, issn 0305-1048Article

The pleiotropic role of the fibrinogen γ' chain in hemostasisDE WILLIGE, Shirley Uitte; STANDEVEN, Kristina F; PHILIPPOU, Helen et al.Blood. 2009, Vol 114, Num 19, pp 3994-4001, issn 0006-4971, 8 p.Article

Pathophysiologic roles of the fibrinogen gamma chainFARRELL, David H.Current opinion in hematology. 2004, Vol 11, Num 3, pp 151-155, issn 1065-6251, 5 p.Article

Concomitant rearrangements of T-cell β- and γ-chain genes in childhood T-lineage leukemia/lymphomaHA-KAWA, K; YUMURA, K; HARA, J et al.Leukemia research. 1987, Vol 11, Num 8, pp 739-745, issn 0145-2126Article

Diversity of γδ T-cell receptors expresssed by dendritic epidermal cell linesKONING, F; YOKOYAMA, W. M; STINGL, G et al.Annals of the New York Academy of Sciences. 1988, Vol 546, pp 201-203, issn 0077-8923Conference Paper

Molecular genotypes of the human T-cell receptor γ chainYIXIN LI; SZABO, P; POSNETT, D. N et al.Annals of the New York Academy of Sciences. 1988, Vol 546, pp 219-221, issn 0077-8923Conference Paper

Plasma and platelet fibrinogen differ in γ chain contentFRANCIS, C. W; NACHMAN, R. L; MARDER, V. J et al.Thrombosis and haemostasis. 1984, Vol 51, Num 1, pp 84-88, issn 0340-6245Article

The γ-chain heterogeneity of haemoglobin F in German infantsPEKRUN, A; SCHARNETZKY, M; GAHR, M et al.European journal of pediatrics. 1989, Vol 148, Num 4, pp 304-306, issn 0340-6199, 3 p.Article

A human Ia cytoplasmic determinant located on multiple forms of invariant chain (γ, γ2, γ3)QUARANTA, V; MAJDIC, O; STINGL, G et al.The Journal of immunology (1950). 1984, Vol 132, Num 4, pp 1900-1905, issn 0022-1767Article

β°-thalassemia in association with a γ-globin gene quadruplicationYANG, K. G; LIU, J. Z; KUTLAR, F et al.Blood. 1986, Vol 68, Num 6, pp 1394-1397, issn 0006-4971Article

Structure of the human γ-fibrinogen gene: alternate mRNA splicing near the 3' end of the gene produces γA and γB forms of γ-fibrinogenFORNACE, A. J. JR; CUMMINGS, D. E; COMEAU, C. M et al.The Journal of biological chemistry (Print). 1984, Vol 259, Num 20, pp 12826-12830, issn 0021-9258Article

Cleavage of fibrin-derived D-dimer into monomers by endopeptidase from puff adder venom (Bitis arietans) acting at cross-linked sites of the γ-chain. Sequence of carboxy-terminal cyanogen bromide γ-chain fragmentsPURVES, L; PURVES, M; BRANDT, W et al.Biochemistry (Easton). 1987, Vol 26, Num 15, pp 4640-4646, issn 0006-2960Article

Conformational equilibria in the γ chain COOH terminus of human fibrinogenCIERNIEWSKI, C. S; BUDZYNSKI, A. Z.The Journal of biological chemistry (Print). 1987, Vol 262, Num 29, pp 13896-13901, issn 0021-9258Article

The COOH-terminal globular domain of fibrinogen γ chain suppresses angiogenesis and tumor growthAKAKURA, Nobuaki; HOOGLAND, Case; TAKADA, Yoko K et al.Cancer research (Baltimore). 2006, Vol 66, Num 19, pp 9691-9697, issn 0008-5472, 7 p.Article

A lower molecular weight γ-chain variant in a congenital abnormal fibrinogen (Kyoto)YOSHIDA, N; OKUMA, M; MOROI, M et al.Blood. 1986, Vol 68, Num 3, pp 703-707, issn 0006-4971Article

A case of multiple myeloma with two subclones producing separately kappa and defective gamma chainsMETZ, K; LEDER, L.-D.Cancer. 1985, Vol 56, Num 6, pp 1392-1395, issn 0008-543XArticle

Nucleotide sequence of the gene for the γ chain of human fibrinogenRIXON, M. W; CHUNG, D. W; DAVIE, E. W et al.Biochemistry (Easton). 1985, Vol 24, Num 8, pp 2077-2086, issn 0006-2960Article

Propriétés biologiques d'une séquence synthétique (10-24) de la chaîne γ de la sous-unité A de la toxine cholérique = Biological properties of a synthetic sequence (10-24) of the γ chain, a subunit of the choleric toxinDODIN, A; YUAN PEI NA; LE THUILLIER, G et al.Comptes rendus des séances de l'Académie des sciences. Série 3, Sciences de la vie. 1983, Vol 297, Num 12, pp 557-562, issn 0249-6313Article

Fibrinogen Krakow : A novel hypo/dysfibrinogenemia mutation in fibrinogen gamma chain (Asn32511e) affecting fibrin clot structure and functionUNDAS, Anetta; ZDZIARSKA, Joanna; IWANIEC, Teresa et al.Thrombosis and haemostasis. 2009, Vol 101, Num 5, pp 975-976, issn 0340-6245, 2 p.Article

Functional analysis of fibrin γ-chain cross-linking by activated factor XΙΙΙ: determination of a cross-linking pattern that maximizes clot stiffnessSTANDEVEN, Kristina F; CARTER, Angela M; GRANT, Peter J et al.Blood. 2007, Vol 110, Num 3, pp 902-907, issn 0006-4971, 6 p.Article

Purification and characterization of γ-enolase from various mammalsAOKI, T; TANAKA, T; WATABE, H et al.Chemical and pharmaceutical bulletin. 1992, Vol 40, Num 5, pp 1236-1239, issn 0009-2363Article

Acetylcholine receptor assembly is stimulated by phosphorylation of its γ subunitGREEN, W. N; ROSS, A. F; CLAUDIO, T et al.Neuron (Cambridge, Mass.). 1991, Vol 7, Num 4, pp 659-666, issn 0896-6273Article

Influence of γ-chain amino-terminal acetylation on subunit assembly of human fetal hemoglobinKASTEN-JOLLY, J; ABRAHAM, E. C.Biochimica et biophysica acta. 1987, Vol 913, Num 1, pp 89-91, issn 0006-3002Article

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