Article tools
Author information

Research Article

Deficiency of Src family kinases Fgr and Hck results in activation of erythrocyte K/Cl cotransport.

L De Franceschi, L Fumagalli, O Olivieri, R Corrocher, C A Lowell and G Berton

Institute of Internal Medicine, University of Verona, Italy.

Published January 15, 1997

Src-family kinases play a central role in regulation of hematopoietic cell functions. We found that mouse erythrocytes express the Src-family kinases Fgr and Hck, as well as Lyn. To directly test whether Fgr and Hck play any role in erythrocyte function, we analyzed red cells isolated from fgr-/-, hck-/-, and fgr-/- hck-/- knock-out mice. Mean corpuscular hemoglobin concentration and median density are increased, while K content is decreased, in fgr-/- hck-/- double-mutant erythrocytes compared with wild-type, fgr-/-, or hck-/- erythrocytes. Na/K pump and Na/K/Cl cotransport were not altered, but K/Cl cotransport activity was significantly and substantially higher (approximately three-fold) in fgr-/- hck-/- double-mutant erythrocytes. This enhanced K/Cl cotransport activity did not depend on cell age. In fact, in response to bleeding, K/Cl cotransport activity increased in parallel with reticulocytosis in wild-type erythrocytes, while abnormal K/Cl cotransport did not change as a consequence of reticulocytosis in fgr-/- hck-/- double-mutant erythrocytes. Okadaic acid, an inhibitor of a phosphatase that has been implicated in activation of the K/Cl cotransporter, inhibited K/Cl cotransport in wild-type and fgr-/- hck-/- double-mutant erythrocytes to a comparable extent. In contrast, staurosporine, an inhibitor of a kinase that has been suggested to negatively regulate this same phosphatase enhanced K/Cl cotransport in wild-type but not in fgr-/- hck-/- double-mutant erythrocytes. On the basis of these findings, we propose that Fgr and Hck are the kinases involved in the negative regulation of the K/Cl cotransporter-activating phosphatase. Abnormality of erythrocyte K/Cl cotransport in fgr-/- hck-/- double-mutant animals represents the first demonstration that Src-family kinases may be involved in regulation of membrane transport.

Articles that cite
this article:

Distinct properties of functional KCC2 expression in immature mouse hippocampal neurons in culture and in acute slices
Stanislav Khirug, Kristiina Huttu, Anastasia Ludwig, Sergei Smirnov, Juha Voipio, Claudio Rivera, Kai Kaila, Leonard Khiroug
Eur J Neurosci 21(4):899. [CrossRef]

Regulation of K-Cl Cotransport: from Function to Genes
N.C. Adragna, M. Di Fulvio, P.K. Lauf
J Membr Biol 201(3):109. [CrossRef]

Fgr
Giorgio Berton
[CrossRef]

Regulation of K–Cl cotransport by protein phosphatase 1α in mouse erythrocytes
Lucia De Franceschi, Emma Villa-moruzzi, Andrea Biondani, Angela Siciliano, Carlo Brugnara, Seth L Alper, Clifford A Lowell, Giorgio Berton
Pflugers Arch 451(6):760. [CrossRef]

HUMAN AND MURINE PHENOTYPES ASSOCIATED WITH DEFECTS IN CATION-CHLORIDE COTRANSPORT
Eric Delpire, David B. Mount
Annu Rev Physiol 64(1):803. [CrossRef]

K+-Cl- cotransport: 'to be or not to be' oxygen sensitive
Peter K. Lauf
J Physiol 511(1):1. [CrossRef]

Role of polyamine structure in inhibition of K+-Cl- cotransport in human red cell ghosts
J. R. Sachs, D. W. Martin
J Physiol 520(3):723. [CrossRef]


David Mount, Gerardo Gamba
Curr Opin Nephrol Hypertens 10(5):685. [CrossRef]

Sickle Cell Disease: From Membrane Pathophysiology to Novel Therapies for Prevention of Erythrocyte Dehydration
Carlo Brugnara
J Pediatr Hematol Oncol 25(12):927. [CrossRef]

PTPϵ has a critical role in signaling transduction pathways and phosphoprotein network topology in red cells
Lucia De franceschi, Andrea Biondani, Franco Carta, Franco Turrini, Carlo Laudanna, Renzo Deana, Anna Maria Brunati, Loris Turretta, Achille Iolascon, Silverio Perrotta
8(22):4695. [CrossRef]

Effects of phorbol 12-myristate 13-acetate on potassium transport in the red blood cells of frog Rana temporaria
Natalia Ivanovna Agalakova, G. P. Gusev
J Comp Physiol B 179(4):443. [CrossRef]

Liar, a novel Lyn-binding nuclear/cytoplasmic shuttling protein that influences erythropoietin-induced differentiation
A. L. Samuels, S. P. Klinken, E. Ingley
113(16):3845. [CrossRef]