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Results: 1 to 20 of 60

References for PMC Articles for PubMed (Select 20231105)

1.

Rho GTPases in hematopoiesis and hemopathies.

Mulloy JC, Cancelas JA, Filippi MD, Kalfa TA, Guo F, Zheng Y.

Blood. 2010 Feb 4;115(5):936-47. doi: 10.1182/blood-2009-09-198127. Epub 2009 Nov 24. Review.

2.

Current knowledge about the functional roles of phosphorylative changes of membrane proteins in normal and diseased red cells.

Pantaleo A, De Franceschi L, Ferru E, Vono R, Turrini F.

J Proteomics. 2010 Jan 3;73(3):445-55. doi: 10.1016/j.jprot.2009.08.011. Epub 2009 Sep 14. Review.

PMID:
19758581
3.

Regulation of the phagocyte NADPH oxidase activity: phosphorylation of gp91phox/NOX2 by protein kinase C enhances its diaphorase activity and binding to Rac2, p67phox, and p47phox.

Raad H, Paclet MH, Boussetta T, Kroviarski Y, Morel F, Quinn MT, Gougerot-Pocidalo MA, Dang PM, El-Benna J.

FASEB J. 2009 Apr;23(4):1011-22. doi: 10.1096/fj.08-114553. Epub 2008 Nov 21.

4.

Red cell membrane: past, present, and future.

Mohandas N, Gallagher PG.

Blood. 2008 Nov 15;112(10):3939-48. doi: 10.1182/blood-2008-07-161166. Review.

5.

Hereditary spherocytosis.

Perrotta S, Gallagher PG, Mohandas N.

Lancet. 2008 Oct 18;372(9647):1411-26. doi: 10.1016/S0140-6736(08)61588-3.

PMID:
18940465
6.

Hydroxyurea for children with sickle cell disease.

Heeney MM, Ware RE.

Pediatr Clin North Am. 2008 Apr;55(2):483-501, x. doi: 10.1016/j.pcl.2008.02.003. Review.

PMID:
18381097
7.

Selective binding of phorbol esters and diacylglycerol by individual C1 domains of the PKD family.

Chen J, Deng F, Li J, Wang QJ.

Biochem J. 2008 Apr 15;411(2):333-42.

PMID:
18076381
8.

Sickle cell disease: role of reactive oxygen and nitrogen metabolites.

Wood KC, Granger DN.

Clin Exp Pharmacol Physiol. 2007 Sep;34(9):926-32. Review.

PMID:
17645642
9.

The human reticulocyte transcriptome.

Goh SH, Josleyn M, Lee YT, Danner RL, Gherman RB, Cam MC, Miller JL.

Physiol Genomics. 2007 Jul 18;30(2):172-8. Epub 2007 Apr 3.

10.

SHP-1 tyrosine phosphatase in human erythrocytes.

Bragadin M, Ion-Popa F, Clari G, Bordin L.

Ann N Y Acad Sci. 2007 Jan;1095:193-203.

PMID:
17404032
11.

The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology.

Bedard K, Krause KH.

Physiol Rev. 2007 Jan;87(1):245-313. Review.

12.

Rac GTPases regulate the morphology and deformability of the erythrocyte cytoskeleton.

Kalfa TA, Pushkaran S, Mohandas N, Hartwig JH, Fowler VM, Johnson JF, Joiner CH, Williams DA, Zheng Y.

Blood. 2006 Dec 1;108(12):3637-45. Epub 2006 Aug 1.

13.

Regulation of NADPH oxidases: the role of Rac proteins.

Hordijk PL.

Circ Res. 2006 Mar 3;98(4):453-62. Review.

14.

Selective Rac-1 inhibition protects from diabetes-induced vascular injury.

Vecchione C, Aretini A, Marino G, Bettarini U, Poulet R, Maffei A, Sbroggi├▓ M, Pastore L, Gentile MT, Notte A, Iorio L, Hirsch E, Tarone G, Lembo G.

Circ Res. 2006 Feb 3;98(2):218-25. Epub 2005 Dec 15.

15.

Protein kinase C and the regulation of the actin cytoskeleton.

Larsson C.

Cell Signal. 2006 Mar;18(3):276-84. Epub 2005 Aug 16. Review.

PMID:
16109477
16.

Endothelial cell NADPH oxidase mediates the cerebral microvascular dysfunction in sickle cell transgenic mice.

Wood KC, Hebbel RP, Granger DN.

FASEB J. 2005 Jun;19(8):989-91. Epub 2005 Mar 22.

17.

Modulation of erythrocyte membrane mechanical function by protein 4.1 phosphorylation.

Manno S, Takakuwa Y, Mohandas N.

J Biol Chem. 2005 Mar 4;280(9):7581-7. Epub 2004 Dec 15.

18.

Sickle red cell microrheology and sickle blood rheology.

Ballas SK, Mohandas N.

Microcirculation. 2004 Mar;11(2):209-25. Review.

PMID:
15280093
19.

KCl cotransport mediates abnormal sulfhydryl-dependent volume regulation in sickle reticulocytes.

Joiner CH, Rettig RK, Jiang M, Franco RS.

Blood. 2004 Nov 1;104(9):2954-60. Epub 2004 Jul 8.

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