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6. Modulation of erythrocyte membrane mechanical function by beta-spectrin phosphorylation and dephosphorylation. Manno S, Takakuwa Y, Nagao K, Mohandas N. J Biol Chem; 1995 Mar 10; 270(10):5659-65. PubMed ID: 7890688 [Abstract] [Full Text] [Related]
7. Studies of the erythrocyte spectrin tetramerization region. Park S, Mehboob S, Luo BH, Hurtuk M, Johnson ME, Fung LW. Cell Mol Biol Lett; 2001 Mar 10; 6(3):571-85. PubMed ID: 11598635 [Abstract] [Full Text] [Related]
15. Location of the human red cell spectrin tetramer binding site and detection of a related "closed" hairpin loop dimer using proteolytic footprinting. Speicher DW, DeSilva TM, Speicher KD, Ursitti JA, Hembach P, Weglarz L. J Biol Chem; 1993 Feb 25; 268(6):4227-35. PubMed ID: 8440706 [Abstract] [Full Text] [Related]
16. A partial structural repeat forms the heterodimer self-association site of all beta-spectrins. Kennedy SP, Weed SA, Forget BG, Morrow JS. J Biol Chem; 1994 Apr 15; 269(15):11400-8. PubMed ID: 8157672 [Abstract] [Full Text] [Related]
17. Phosphorylation reduces the affinity of protein 4.1 for spectrin. Eder PS, Soong CJ, Tao M. Biochemistry; 1986 Apr 08; 25(7):1764-70. PubMed ID: 3707908 [Abstract] [Full Text] [Related]
18. Role of terminal nonhomologous domains in initiation of human red cell spectrin dimerization. Harper SL, Begg GE, Speicher DW. Biochemistry; 2001 Aug 21; 40(33):9935-43. PubMed ID: 11502188 [Abstract] [Full Text] [Related]
19. Increased [32P]-phosphorylation of tryptic peptides of erythrocyte spectrin in Duchenne muscular dystrophy. Mabry ME, Roses AD. Muscle Nerve; 1981 Aug 21; 4(6):489-93. PubMed ID: 7311988 [Abstract] [Full Text] [Related]
20. Human erythrocyte spectrin: phosphorylation in intact cells and purification of the 32P-labeled protein in a non-aggregated state. Bennett V. Life Sci; 1977 Aug 01; 21(3):433-40. PubMed ID: 895375 [No Abstract] [Full Text] [Related] Page: [Next] [New Search]