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Sztalryd, C., Xu, G., Dorward, H., Tansey, J. T., Contreras, J. A., Kimmel, A. R., et al. (2003).
Perilipin A is essential for the translocation of hormone-sensitive lipase during lipolytic
activation. The Journal of Cell Biology , 161 , 1093-1103.
Villena, J. A., Roy, S., Sarkadi-Nagy, E., Kim, K. H., & Sul, H. S. (2004). Desnutrin, an
adipocyte gene encoding a novel patatin domain-containing protein, is induced by fasting
and glucocorticoids: Ectopic expression of desnutrin increases triglyceride hydrolysis.
Journal of Biological Chemistry , 279 , 47066-47075.
Vogel, A., & Pollack, R. (1973). Isolation and characterization of revertant cell lines. IV.
Direct selection of serum-revertant sublines of SV40-transformed 3T3 mouse cells.
Journal of Cellular Physiology , 82 , 189-198.
Wang, H., Bell, M., Sreenevasan, U., Hu, H., Liu, J., Dalen, K., et al. (2011). Unique regulation
of adipose triglyceride lipase (ATGL) by perilipin 5, a lipid droplet-associated protein. The
Journal of Biological Chemistry , 286 , 15707-15715.
Wang, H., Hu, L., Dalen, K., Dorward, H., Marcinkiewicz, A., Russell, D., et al. (2009).
Activation of hormone-sensitive lipase requires two steps, protein phosphorylation and
binding to the PAT-1 domain of lipid droplet coat proteins. Journal of Biological
Chemistry , 284 , 32116-32125.
Wang, S. P., Laurin, N., Himms-Hagen, J., Rudnicki, M. A., Levy, E., Robert, M. F., et al.
(2001). The adipose tissue phenotype of hormone-sensitive lipase deficiency in mice.
Obesity Research , 9 , 119-128.
Watson, R. T., Furukawa, M., Chiang, S. H., Boeglin, D., Kanzaki, M., Saltiel, A. R., et al.
(2003). The exocytotic trafficking of TC10 occurs through both classical and nonclassical
secretory transport pathways in 3T3L1 adipocytes. Molecular and Cellular Biology , 23 ,
961-974.
Watt, M. J., & Spriet, L. L. (2010). Triacylglycerol lipases and metabolic control: Implications
for health and disease. American Journal of Physiology, Endocrinology and Metabolism ,
299 , E162-E168.
Wu, J. W., Wang, S. P., Alvarez, F., Casavant, S., Gauthier, N., Abed, L., et al. (2011).
Deficiency of liver adipose triglyceride lipase in mice causes progressive hepatic steatosis.
Hepatology , 54 , 122-132.
Yamaguchi, T., Omatsu, N., Matsushita, S., & Osumi, T. (2004). CGI-58 interacts with
perilipin and is localized to lipid droplets. Possible involvement of CGI-58
mislocalization in Chanarin-Dorfman syndrome. Journal of Biological Chemistry , 279 ,
30490-30497.
Yang, X., Heckmann, B. L., Zhang, X., Smas, C. M., & Liu, J. (2013). Distinct mechanisms
regulate ATGL-mediated adipocyte lipolysis by lipid droplet coat proteins. Molecular
Endocrinology , 27 , 116-126.
Yang, X., Lu, X., Lombes, M., Rha, G. B., Chi, Y. I., Guerin, T. M., et al. (2010). The G(0)/G
(1) switch gene 2 regulates adipose lipolysis through association with adipose triglyceride
lipase. Cell Metabolism , 11 , 194-205.
Yang, X., Zhang, X., Heckmann, B. L., Lu, X., & Liu, J. (2011). Relative contribution of
adipose triglyceride lipase and hormone-sensitive lipase to tumor necrosis factor-alpha
(TNF-alpha)-induced lipolysis in adipocytes. The Journal of Biological Chemistry , 286 ,
40477-40485.
Zimmermann, R., Haemmerle, G., Wagner, E. M., Strauss, J. G., Kratky, D., & Zechner, R.
(2003). Decreased fatty acid esterification compensates for the reduced lipolytic activity in
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