References

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2.      Refined Crystal Structure of Deoxyhemoglobin S. Padlan, Eduardo A., Love, Warner E. The Journal of Biological Chemistry.  260(14): 8272-8279. 1985.

3.      The Structural Link Between Polymerization and Sickle Cell Disease.  Journal of Molecular Biology (JMB). 265: 475-479. 1997

4.      Role of Leu-B88 in the Hydrophobic Acceptor Pocket of Val B6 during Hemoglobin S Polymerization.  Adachi, Kazuhiko, Konitzer, Patrick, Paulraj, Christopher G., Surrey, Saul.  The Journal of Biological Chemistry.  269(26): 17477-17480. 1994.

5.      Analysis of Stability of Hemoglobin S Double Bonds. Mu, Xiang-Qi, Makowski, Lee, Magdoff-Fairchild, Beatrice.  Biophysical Journal.  74: 655-668. 1996.

6.      A Role for a113 Amino Acid Residue in the Polymerization of Sickle Hemoglobin.  Sivaram, Mylavarapu V., Sudha, Rajamani, Roy, Rajendra P.  The Journal of Biochemistry.  276(21): 18209-18215.  2001.

7.      Reptile Heme Protein Structure: X-ray Crystallographic Study of the Aquo-met and Cyano-met Derivatives of the Loggerhead Sea Turle (Caretta caretta) Myoglobin at 2.0 Å Resolution.  Nardini, M, Tarricone, C., Rizzi, M., Lania, A., Desideri, A.  Journal of Molecular Biology.  247(3): 459-465.  1995.

8.      1.25 A resolution crystal structures of human haemoglobin in the oxy, deoxy, and carbonmonoxy forms.  Park, SY., Yokoyama, T., Shibayama, N., Shiro, N.  Journal of Molecular Biology.  360(3): 690-701.  2006. 

9.      Holm L, Rosenström P (2010) Dali server: conservation mapping in 3D. Nucl. Acids Res. 38, W545-549.