The relationship between the L1 and L2 domains of the insulin and epidermal growth factor receptors and leucine-rich repeat modules
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[1] W R Taylor,et al. On the tertiary structure of the extracellular domains of the epidermal growth factor and insulin receptors. , 1987, Biochimica et biophysica acta.
[2] R. Kretsinger,et al. Super‐motifs and evolution of tandem leucine‐rich repeats within the small proteoglycans—biglycan, decorin, lumican, fibromodulin, PRELP, keratocan, osteoadherin, epiphycan, and osteoglycin , 2000, Proteins.
[3] R. Espinosa,et al. axl, a transforming gene isolated from primary human myeloid leukemia cells, encodes a novel receptor tyrosine kinase , 1991, Molecular and cellular biology.
[4] Peer Bork,et al. Mobile modules and motifs , 1992, Current Biology.
[5] S. Wodak,et al. Modeling of the three-dimensional structure of proteins with the typical leucine-rich repeats. , 1995, Structure.
[6] N. Mckern,et al. Crystal structure of the first three domains of the type-1 insulin-like growth factor receptor , 1998, Nature.
[7] Pascale Cossart,et al. Sequence Profile of the Parallel β Helix in the Pectate Lyase Superfamily , 1998 .
[8] M. Gribskov,et al. [9] Profile analysis , 1990 .
[9] K. Mizuguchi,et al. A third fibronectin type III domain in the extracellular region of the insulin receptor family , 1998, FEBS letters.
[10] J. Deisenhofer,et al. The leucine-rich repeat: a versatile binding motif. , 1994, Trends in biochemical sciences.
[11] B Henrissat,et al. Functional Implications of Structure-Based Sequence Alignment of Proteins in the Extracellular Pectate Lyase Superfamily , 1995, Plant physiology.
[12] D. Robinson,et al. The protein tyrosine kinase family of the human genome , 2000, Oncogene.
[13] M. Yoder,et al. New domain motif: the structure of pectate lyase C, a secreted plant virulence factor. , 1993, Science.
[14] J Deisenhofer,et al. Proteins with leucine-rich repeats. , 1995, Current opinion in structural biology.
[15] P Bork,et al. Structure and distribution of modules in extracellular proteins , 1996, Quarterly Reviews of Biophysics.
[16] H. Kawasaki,et al. A 40-kDa epidermal growth factor/transforming growth factor alpha-binding domain produced by limited proteolysis of the extracellular domain of the epidermal growth factor receptor. , 1993, The Journal of biological chemistry.
[17] R. Pickersgill,et al. The structure of Bacillus subtilis pectate lyase in complex with calcium , 1994, Nature Structural Biology.
[18] A. Ullrich,et al. Functional analysis of the ligand binding site of EGF‐receptor utilizing chimeric chicken/human receptor molecules. , 1989, The EMBO journal.
[19] M. Yoder,et al. Unusual structural features in the parallel β-helix in pectate lyases , 1993 .
[20] C. Ward,et al. Structure and function of the type 1 insulin-like growth factor receptor , 2000, Cellular and Molecular Life Sciences CMLS.
[21] B. Kobe,et al. When protein folding is simplified to protein coiling: the continuum of solenoid protein structures. , 2000, Trends in biochemical sciences.
[22] G. Booker,et al. A third fibronectin-type-III domain in the insulin-family receptors. , 1998, Trends in biochemical sciences.
[23] C. Ward. Members of the insulin receptor family contain three fibronectin type III domains. , 1999, Growth factors.
[24] Peer Bork,et al. SMART: a web-based tool for the study of genetically mobile domains , 2000, Nucleic Acids Res..
[25] The parallel β helix and other coiled folds , 1995 .
[26] Philip R. Evans,et al. Crystal structure of the spliceosomal U2B″–U2A′ protein complex bound to a fragment of U2 small nuclear RNA , 1998, Nature.
[27] Bostjan Kobe,et al. Crystal structure of porcine ribonuclease inhibitor, a protein with leucine-rich repeats , 1993, Nature.
[28] M. Yoder,et al. Unusual structural features in the parallel beta-helix in pectate lyases. , 1993, Structure.
[29] C. Ward,et al. Insulin and epidermal growth factor receptors contain the cysteine repeat motif found in the tumor necrosis factor receptor , 1995, Proteins.
[30] A. Kajava. Structural diversity of leucine-rich repeat proteins. , 1998, Journal of molecular biology.
[31] M. Yoder,et al. The parallel β helix and other coiled folds , 1995, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[32] P. Cossart,et al. Structure of the lnlB leucine-rich repeats, a domain that triggers host cell invasion by the bacterial pathogen L. monocytogenes. , 1999, Molecular cell.
[33] J. Devereux,et al. A comprehensive set of sequence analysis programs for the VAX , 1984, Nucleic Acids Res..
[34] P. Myler,et al. The trypanosome leucine repeat gene in the variant surface glycoprotein expression site encodes a putative metal-binding domain and a region resembling protein-binding domains of yeast, Drosophila, and mammalian proteins , 1990, Molecular and cellular biology.
[35] M. Gribskov,et al. Profile Analysis , 1970 .