Stevens FC (August 1983). "Calmodulin: an introduction". Canadian Journal of Biochemistry and Cell Biology. 61 (8): 906–10. doi:10.1139/o83-115. PMID6313166.
Kuboniwa H, Tjandra N, Grzesiek S, Ren H, Klee CB, Bax A (September 1995). "Solution structure of calcium-free calmodulin". Nature Structural Biology. 2 (9): 768–76. doi:10.1038/nsb0995-768. PMID7552748. S2CID22220229.
Zhang M, Tanaka T, Ikura M (September 1995). "Calcium-induced conformational transition revealed by the solution structure of apo calmodulin". Nature Structural Biology. 2 (9): 758–67. doi:10.1038/nsb0995-758. PMID7552747. S2CID35098883.
Chou JJ, Li S, Klee CB, Bax A (November 2001). "Solution structure of Ca(2+)-calmodulin reveals flexible hand-like properties of its domains". Nature Structural Biology. 8 (11): 990–7. doi:10.1038/nsb1101-990. PMID11685248. S2CID4665648.
Yang JJ, Gawthrop A, Ye Y (August 2003). "Obtaining site-specific calcium-binding affinities of calmodulin". Protein and Peptide Letters. 10 (4): 331–45. doi:10.2174/0929866033478852. PMID14529487.
Ishida H, Vogel HJ (2006). "Protein-peptide interaction studies demonstrate the versatility of calmodulin target protein binding". Protein and Peptide Letters. 13 (5): 455–65. doi:10.2174/092986606776819600. PMID16800798.
Theoharis NT, Sorensen BR, Theisen-Toupal J, Shea MA (January 2008). "The neuronal voltage-dependent sodium channel type II IQ motif lowers the calcium affinity of the C-domain of calmodulin". Biochemistry. 47 (1): 112–23. doi:10.1021/bi7013129. PMID18067319.
Brittain HG, Richardson FS, Martin RB (December 1976). "Terbium (III) emission as a probe of calcium(II) binding sites in proteins". Journal of the American Chemical Society. 98 (25): 8255–60. doi:10.1021/ja00441a060. PMID993525.
Horrocks Jr WD, Sudnick DR (1981-12-01). "Lanthanide ion luminescence probes of the structure of biological macromolecules". Accounts of Chemical Research. 14 (12): 384–392. doi:10.1021/ar00072a004. ISSN0001-4842.
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Sanchez AC, Subudhi PK, Rosenow DT, Nguyen HT (2002). "Mapping QTLs associated with drought resistance in sorghum (Sorghum bicolor L. Moench)". Plant Molecular Biology. 48 (5–6): 713–26. doi:10.1023/a:1014894130270. PMID11999845. S2CID25834614.
Singh S, Virdi AS, Jaswal R, Chawla M, Kapoor S, Mohapatra SB, et al. (June 2017). "A temperature-responsive gene in sorghum encodes a glycine-rich protein that interacts with calmodulin". Biochimie. 137 (Supplement C): 115–123. doi:10.1016/j.biochi.2017.03.010. PMID28322928.
ebi.ac.uk
McDowall J. "Calmodulin". InterPro Protein Archive. Retrieved 23 February 2016.
Stevens FC (August 1983). "Calmodulin: an introduction". Canadian Journal of Biochemistry and Cell Biology. 61 (8): 906–10. doi:10.1139/o83-115. PMID6313166.
Kuboniwa H, Tjandra N, Grzesiek S, Ren H, Klee CB, Bax A (September 1995). "Solution structure of calcium-free calmodulin". Nature Structural Biology. 2 (9): 768–76. doi:10.1038/nsb0995-768. PMID7552748. S2CID22220229.
Zhang M, Tanaka T, Ikura M (September 1995). "Calcium-induced conformational transition revealed by the solution structure of apo calmodulin". Nature Structural Biology. 2 (9): 758–67. doi:10.1038/nsb0995-758. PMID7552747. S2CID35098883.
Chou JJ, Li S, Klee CB, Bax A (November 2001). "Solution structure of Ca(2+)-calmodulin reveals flexible hand-like properties of its domains". Nature Structural Biology. 8 (11): 990–7. doi:10.1038/nsb1101-990. PMID11685248. S2CID4665648.
Yang JJ, Gawthrop A, Ye Y (August 2003). "Obtaining site-specific calcium-binding affinities of calmodulin". Protein and Peptide Letters. 10 (4): 331–45. doi:10.2174/0929866033478852. PMID14529487.
Ishida H, Vogel HJ (2006). "Protein-peptide interaction studies demonstrate the versatility of calmodulin target protein binding". Protein and Peptide Letters. 13 (5): 455–65. doi:10.2174/092986606776819600. PMID16800798.
Theoharis NT, Sorensen BR, Theisen-Toupal J, Shea MA (January 2008). "The neuronal voltage-dependent sodium channel type II IQ motif lowers the calcium affinity of the C-domain of calmodulin". Biochemistry. 47 (1): 112–23. doi:10.1021/bi7013129. PMID18067319.
Brittain HG, Richardson FS, Martin RB (December 1976). "Terbium (III) emission as a probe of calcium(II) binding sites in proteins". Journal of the American Chemical Society. 98 (25): 8255–60. doi:10.1021/ja00441a060. PMID993525.
Sanchez AC, Subudhi PK, Rosenow DT, Nguyen HT (2002). "Mapping QTLs associated with drought resistance in sorghum (Sorghum bicolor L. Moench)". Plant Molecular Biology. 48 (5–6): 713–26. doi:10.1023/a:1014894130270. PMID11999845. S2CID25834614.
Singh S, Virdi AS, Jaswal R, Chawla M, Kapoor S, Mohapatra SB, et al. (June 2017). "A temperature-responsive gene in sorghum encodes a glycine-rich protein that interacts with calmodulin". Biochimie. 137 (Supplement C): 115–123. doi:10.1016/j.biochi.2017.03.010. PMID28322928.
Kuboniwa H, Tjandra N, Grzesiek S, Ren H, Klee CB, Bax A (September 1995). "Solution structure of calcium-free calmodulin". Nature Structural Biology. 2 (9): 768–76. doi:10.1038/nsb0995-768. PMID7552748. S2CID22220229.
Zhang M, Tanaka T, Ikura M (September 1995). "Calcium-induced conformational transition revealed by the solution structure of apo calmodulin". Nature Structural Biology. 2 (9): 758–67. doi:10.1038/nsb0995-758. PMID7552747. S2CID35098883.
Chou JJ, Li S, Klee CB, Bax A (November 2001). "Solution structure of Ca(2+)-calmodulin reveals flexible hand-like properties of its domains". Nature Structural Biology. 8 (11): 990–7. doi:10.1038/nsb1101-990. PMID11685248. S2CID4665648.
Yamniuk AP, Vogel HJ (May 2004). "Calmodulin's flexibility allows for promiscuity in its interactions with target proteins and peptides". Molecular Biotechnology. 27 (1): 33–57. doi:10.1385/MB:27:1:33. PMID15122046. S2CID26585744.
Horrocks Jr WD, Sudnick DR (1981-12-01). "Lanthanide ion luminescence probes of the structure of biological macromolecules". Accounts of Chemical Research. 14 (12): 384–392. doi:10.1021/ar00072a004. ISSN0001-4842.