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Items: 1 to 20 of 114

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Domain-domain interactions in hybrids of tissue-type plasminogen activator and urokinase-type plasminogen activator.

Bakker AH, Nieuwenbroek NM, Verheijen JH.

Protein Eng. 1995 Dec;8(12):1295-1302.

PMID:
8869642
7.

Structures of the noncovalent complexes of human and bovine prothrombin fragment 2 with human PPACK-thrombin.

Arni RK, Padmanabhan K, Padmanabhan KP, Wu TP, Tulinsky A.

Biochemistry. 1993 May 11;32(18):4727-37.

PMID:
8387813
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A 1H-NMR study of isolated domains from human plasminogen. Structural homology between kringles 1 and 4.

Llinas M, De Marco A, Hochschwender SM, Laursen RA.

Eur J Biochem. 1983 Oct 3;135(3):379-91.

13.

Molecular evolution and domain structure of plasminogen-related growth factors (HGF/SF and HGF1/MSP).

Donate LE, Gherardi E, Srinivasan N, Sowdhamini R, Aparicio S, Blundell TL.

Protein Sci. 1994 Dec;3(12):2378-94.

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Secondary structure predictions of human plasminogen and the bovine prothrombin kringle loops.

Powell JR, Beals JM, Castellino FJ.

Arch Biochem Biophys. 1986 Jul;248(1):390-400.

PMID:
2942111
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17.

Solution structure and dynamics of the plasminogen kringle 2-AMCHA complex: 3(1)-helix in homologous domains.

Marti DN, Schaller J, Llinás M.

Biochemistry. 1999 Nov 30;38(48):15741-55.

PMID:
10625440
18.

Changes in gene expression of kringle domain-containing proteins in murine brains and neuroblastoma cells infected by prions.

Kim Y, Song J, Mays CE, Titlow W, Yoon D, Ryou C.

Mol Cell Biochem. 2009 Aug;328(1-2):177-82. doi: 10.1007/s11010-009-0087-4. Epub 2009 Mar 26.

PMID:
19322640
19.

Prion protein stimulates tissue-type plasminogen activator-mediated plasmin generation via a lysine-binding site on kringle 2.

Epple G, Schleuning WD, Kettelgerdes G, Kottgen E, Gessner R, Praus M.

J Thromb Haemost. 2004 Jun;2(6):962-8.

PMID:
15140132
20.
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