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  1. 1.   Developmental Cardiac Hypertrophy in a Mouse Model of Prolidase Deficiency
  2. Jung, S.; Silvius, D.; Nolan, K. A.; Borchert, G. L.; Millet, Y. H.; Phang, J. M.; Gunn, T. M.
  3. Birth Defects Research Part a-Clinical and Molecular Teratology. 2011, Apr; 91(4): 204-217.
  1. 2.   Proline Metabolism and Microenvironmental Stress
  2. Phang, J. M.; Liu, W.; Zabirnyk, O.
  3. Annual review of nutrition. 2010, Aug 21; 30: 441-463.
  1. 3.   Nitric oxide regulates prolidase activity by serine/threonine phosphorylation
  2. Surazynski, A.; Liu, Y. M.; Miltyk, W.; Phang, J. M.
  3. Journal of Cellular Biochemistry. 2005, DEC 1; 96(5): 1086-1094.
  1. 4.   Inhibition of prolidase activity by nickel causes decreased growth of proline auxotrophic CHO cells
  2. Miltylk, W.; Surazynski, A.; Kasprzak, K. S.; Fivash, M. J.; Buzard, G. S.; Phang, J. M.
  3. Journal of Cellular Biochemistry. 2005, APR 15; 94(6): 1210-1217.
  1. 5.   Prolidase Activity in Fibroblasts Is Regulated By Interaction of Extracellular Matrix With Cell Surface Integrin Receptors
  2. Palka, J. A.; Phang, J. M.
  3. Journal of Cellular Biochemistry. 1997 67(2): 166-175.
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