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Three-dimensional Structure of Goose-type Lysozyme from the Egg White of the Australian Black Swan, Cygnus atratus

NW Isaacs, K JMachin and M Masakuni
38(1) pp.13 - 22


13 articles found in Crossref database.

Role of His101 in the Protein Folding/Unfolding of a Goose-Type Lysozyme from Ostrich (Struthio camelus) Egg White
Somboonpatarakun Chalermchai, Fukamizo Tamo, Araki Tomohiro, Klaynongsruang Sompong
The Protein Journal. 2016 35(6). p.416
Thermodynamics and structure of a salmon cold active goose-type lysozyme
Kyomuhendo Peter, Myrnes Bjørnar, Brandsdal Bjørn-Olav, Smalås Arne O., Nilsen Inge W., Helland Ronny
Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology. 2010 156(4). p.254
Mechanical stability of compact modules of barnase
Takahashi Ken-ichi, Oohashi Michita, Noguti Tosiyuki, Gō Mitiko
FEBS Letters. 1997 405(1). p.47
The Primary Structure of Cassowary (Casuarius casuarius) Goose Type Lysozyme
THAMMASIRIRAK Sompong, TORIKATA Takao, TAKAMI Kazutoshi, MURATA Koichi, ARAKI Tomohiro
Bioscience, Biotechnology, and Biochemistry. 2002 66(1). p.147
Secondary structural features of modules M2 and M3 of barnase in solution by NMR experiment and distance geometry calculation
Ikura Teikichi, Gō Nobuhiro, Kohda Daisuke, Inagaki Fuyuhiko, Yanagawa Hiroshi, Kawabata Masuyo, Kawabata Shun‐ichiro, Iwanaga Sadaaki, Noguti Tosiyuki, Gō Mitiko
Proteins: Structure, Function, and Bioinformatics. 1993 16(4). p.341
The catalytic domain of a bacterial lytic transglycosylase defines a novel class of lysozymes
Thunnissen Andy‐Mark W. H., Isaacs Neil W., Dijkstral Bauke W.
Proteins: Structure, Function, and Bioinformatics. 1995 22(3). p.245
A goose-type lysozyme from ostrich (Struthio camelus) egg white: multiple roles of His101 in its enzymatic reaction
Somboonpatarakun Chalermchai, Shinya Shoko, Kawaguchi Yuya, Araki Tomohiro, Fukamizo Tamo, Klaynongsruang Sompong
Bioscience, Biotechnology, and Biochemistry. 2016 80(2). p.264
Localization of hydrogen‐bonds within modules in barnase
Noguti Tosiyuki, Sakakibara Hirofumi, Gō Mitiko
Proteins: Structure, Function, and Bioinformatics. 1993 16(4). p.357
Comparison of goose-type, chicken-type, and phage-type lysozymes illustrates the changes that occur in both amino acid sequence and three-dimensional structure during evolution
Weaver L. H., Grütter M. G., Remington S. J., Gray T. M., Isaacs N. W., Matthews B. W.
Journal of Molecular Evolution. 1985 21(2). p.97
Experimental Verification of the Crucial Roles of Glu73 in the Catalytic Activity and Structural Stability of Goose Type Lysozyme
Kawamura Shunsuke, Ohno Kohji, Ohkuma Mari, Chijiiwa Yuki, Torikata Takao
The Journal of Biochemistry. 2006 140(1). p.75
The refined structures of goose lysozyme and its complex with a bound trisaccharide show that the “Goose-type” ly'sozymes lack a catalytic aspartate residue
Weaver L.H., Grütter M.G., Matthews B.W.
Journal of Molecular Biology. 1995 245(1). p.54
Role of disulfide bonds in goose‐type lysozyme
Kawamura Shunsuke, Ohkuma Mari, Chijiiwa Yuki, Kohno Daiki, Nakagawa Hiroyuki, Hirakawa Hideki, Kuhara Satoru, Torikata Takao
The FEBS Journal. 2008 275(11). p.2818
Advances in Protein Chemistry Volume 41 (1991)
Mckenzie Hugh A., White Frederick H.
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