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== References ==
== References ==
1. Berridge, M. J., Lipp, P., & Bootman, M. D. (2000). The versatility and universality of calcium signalling. Nature Reviews Molecular Cell Biology, 1(1), 11-21. doi:10.1038/35036035
Berridge, M. J., Lipp, P., & Bootman, M. D. (2000). The versatility and universality of calcium signalling. Nature Reviews Molecular Cell Biology, 1(1), 11-21. doi:10.1038/35036035


2. Eldik, L., & Watterson, D. (1998). Calmodulin and signal transduction. San Diego: Academic Press.
Chan, K. F., & Chen, W. H. (1990). High performance capillary electrophoresis of calmodulin. Electrophoresis, 11(1), 15-18. doi:10.1002/elps.1150110104 [doi]


3. Huang, X., Liu, Y., Wang, R., Zhong, X., Liu, Y., Koop, A., Liu, Z. (2013). Two potential calmodulin-binding sequences in the ryanodine receptor contribute to a mobile, intra-subunit calmodulin-binding domain. Journal of Cell Science, 126(19), 4527–4535.
Eldik, L., & Watterson, D. (1998). Calmodulin and signal transduction. San Diego: Academic Press.


4. Joseph, J. D., & Means, A. R. (2002). Calcium Binding Is Required for Calmodulin Function in Aspergillus nidulans. Eukaryotic Cell, 1(1), 119–125. http://doi.org/10.1128/EC.01.1.119-125.2002
Huang, X., Liu, Y., Wang, R., Zhong, X., Liu, Y., Koop, A., Liu, Z. (2013). Two potential calmodulin-binding sequences in the ryanodine receptor contribute to a mobile, intra-subunit calmodulin-binding domain. Journal of Cell Science, 126(19), 4527–4535.


5. Lai, M., Brun, D., Edelstein, S. J., & Novere, N. L. (2015). Modulation of Calmodulin lobes by different targets: An allosteric model with hemi concerted conformational transitions. PLOS Computational Biology. http://doi:10.1371/journal.pcbi.1004063
Joseph, J. D., & Means, A. R. (2002). Calcium Binding Is Required for Calmodulin Function in Aspergillus nidulans. Eukaryotic Cell, 1(1), 119–125. http://doi.org/10.1128/EC.01.1.119-125.2002


6. Lukas, T. J., Haiech, J., Lau, W., Craig, T. A., Zimmer, W. E., Shattuck, R. L., et al. (1988). Calmodulin and calmodulin-regulated protein kinases as transducers of intracellular calcium signals. Cold Spring Harbor Symposia on Quantitative Biology, 53 Pt 1, 185-193.
Lai, M., Brun, D., Edelstein, S. J., & Novere, N. L. (2015). Modulation of Calmodulin lobes by different targets: An allosteric model with hemi concerted conformational transitions. PLOS Computational Biology. http://doi:10.1371/journal.pcbi.1004063


7. Neri, D., de Lalla, C., Petrul, H., Neri, P., & Winter, G. (1995). Calmodulin as a versatile tag for antibody fragments. BioTechnology, 13, pp. 373–377
Lukas, T. J., Haiech, J., Lau, W., Craig, T. A., Zimmer, W. E., Shattuck, R. L., et al. (1988). Calmodulin and calmodulin-regulated protein kinases as transducers of intracellular calcium signals. Cold Spring Harbor Symposia on Quantitative Biology, 53 Pt 1, 185-193.


8. Wriggers, W., Mehler, E., Pitici, F., Weinstein, H., & Schulten, K. (1998). Structure and dynamics of Calmodulin in solution. Biophysical Journal, 74, 1622-1639.
MacNeil S., Dawson RA., Crocker G., Barton CH., Hanford L., McGurk MR., and Munro DS.,(1988). Extracellular calmodulin and its association with epidermal growth factor in normal human body fluids. Journal of Endocrinology,118 501–509.


9. Wolfe, D. M. D. M. (2006). Channeling studies in yeast: Yeast as a model for channelopathies? Neuromolecular Medicine, 8(3), 279; 279-306; 306.
Neri, D., de Lalla, C., Petrul, H., Neri, P., & Winter, G. (1995). Calmodulin as a versatile tag for antibody fragments. BioTechnology, 13, pp. 373–377
 
Racioppi, L., Noeldner, P. K., Lin, F., Arvai, S., & Means, A. R. (2012). Calcium/calmodulin-dependent protein kinase kinase 2 regulates macrophage-mediated inflammatory responses. The Journal of Biological Chemistry,287(14), 11579-11591. doi:10.1074/jbc.M111.336032 [doi]
 
Ui-Tei, K., Nagano, M., Sato, S., & Miyata, Y. (2000). Calmodulin-dependent and -independent apoptosis in cell of a drosophila neuronal cell line. Apoptosis : An International Journal on Programmed Cell Death, 5(2), 133-140.
 
Wriggers, W., Mehler, E., Pitici, F., Weinstein, H., & Schulten, K. (1998). Structure and dynamics of Calmodulin in solution. Biophysical Journal, 74, 1622-1639.
 
Wolfe, D. M. D. M. (2006). Channeling studies in yeast: Yeast as a model for channelopathies? Neuromolecular Medicine, 8(3), 279; 279-306; 306.
 
Bagchi, Indrani, Qihu Huang, and Anthony Means. "Identification of Amino Acids Essential for Calmodulin Binding and Activation of Smooth Muscle Myosin Light Chain Kinas." THE JOURNAL OF BIOLOGICAL CHEMISTRY 267.February 15 (1992): 3024. Print.




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