|
|
Previous Article | Table of Contents | Next Article 
A Shortened Life Span of EKLF-/- Adult Erythrocytes, Due to a Deficiency of -Globin Chains, Is Ameliorated by Human -Globin Chains
Sai-Kiang Lim,
James J. Bieker,
Chyuan-Sheng Lin, and
Frank Costantini
From the Department of Genetics and Development, Columbia University, New York, NY; and the Brookdale Center for Molecular Biology, The Mount Sinai School of Medicine, New York, NY.
Using homologous recombination, both EKLF alleles in murine embryonic stem (ES) cells were inactivated. These EKLF-/- ES cells were capable of undergoing in vitro differentiation to form definitive erythroid colonies that were similar in size and number to those formed by wild-type ES cells. However, the EKLF-/- colonies were poorly hemoglobinized and enucleated erythrocytes in these colonies contained numerous Heinz bodies. Reverse transcriptase-polymerase chain reaction (RT-PCR) analyses revealed that adult and embryonic globin genes were appropriately regulated, with the exception of h1-globin, which continued to be expressed at a very low level. The ratio of adult -globin/ -globin mRNA in the mutant ES cells was 1/15 of that in wild-type ES cells. When the EKLF-/- cells were injected into blastocysts, they did not contribute at a detectable level to the mature erythrocyte compartment of the chimeric animals, based on analysis of glucose phosphate isomerase-1 (GPI-1) isozymes and hemoglobins that distinguish ES cell-derived erythrocytes from host blastocyst-derived erythrocytes. In contrast, semiquantitative RT-PCR analysis of RNA from reticulocytes of the same chimeric animals suggested that the ES cell-derived reticulocytes were present at a level of 6% to 8%. This indicated that the EKLF-/- erythrocytes in adult animals must be short-lived, apparently due to the imbalance of -versus -globin chains, leading to the precipitation of excess -globin chains to form Heinz bodies. Consistent with this hypothesis, the short life span was ameliorated by introduction into the EKLF-/- ES cells of a human LCR/ -globin gene, as evidenced by the presence of ES cell-derived reticulocytes as well as mature erythrocytes in the blood of the chimeric animals.
Blood, Vol. 90 No. 3 (August 1), 1997:
pp. 1291-1299
© 1997 by The American Society of Hematology.

CiteULike Connotea Del.icio.us Digg Reddit Technorati What's this?
This article has been cited by other articles:

|
 |

|
 |
 
A. M. Pilon, D. G. Nilson, D. Zhou, J. Sangerman, T. M. Townes, D. M. Bodine, and P. G. Gallagher
Alterations in expression and chromatin configuration of the alpha hemoglobin-stabilizing protein gene in erythroid kruppel-like factor-deficient mice.
Mol. Cell. Biol.,
June 1, 2006;
26(11):
4368 - 4377.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Drissen, M. von Lindern, A. Kolbus, S. Driegen, P. Steinlein, H. Beug, F. Grosveld, and S. Philipsen
The Erythroid Phenotype of EKLF-Null Mice: Defects in Hemoglobin Metabolism and Membrane Stability
Mol. Cell. Biol.,
June 15, 2005;
25(12):
5205 - 5214.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
X. Chen and J. J. Bieker
Stage-Specific Repression by the EKLF Transcriptional Activator
Mol. Cell. Biol.,
December 1, 2004;
24(23):
10416 - 10424.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
R. Drissen, R.-J. Palstra, N. Gillemans, E. Splinter, F. Grosveld, S. Philipsen, and W. de Laat
The active spatial organization of the {beta}-globin locus requires the transcription factor EKLF
Genes & Dev.,
October 15, 2004;
18(20):
2485 - 2490.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
N. J. Dempsey, L. S. Ojalvo, D. W. Wu, and J. A. Little
Induction of an embryonic globin gene promoter by short-chain fatty acids
Blood,
December 1, 2003;
102(12):
4214 - 4222.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
J. Starck, N. Cohet, C. Gonnet, S. Sarrazin, Z. Doubeikovskaia, A. Doubeikovski, A. Verger, M. Duterque-Coquillaud, and F. Morle
Functional Cross-Antagonism between Transcription Factors FLI-1 and EKLF
Mol. Cell. Biol.,
February 15, 2003;
23(4):
1390 - 1402.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
X. Chen and J. J. Bieker
Unanticipated Repression Function Linked to Erythroid Kruppel-Like Factor
Mol. Cell. Biol.,
May 1, 2001;
21(9):
3118 - 3125.
[Abstract]
[Full Text]
|
 |
|

|
 |

|
 |
 
W. Zhang, S. Kadam, B. M. Emerson, and J. J. Bieker
Site-Specific Acetylation by p300 or CREB Binding Protein Regulates Erythroid Kruppel-Like Factor Transcriptional Activity via Its Interaction with the SWI-SNF Complex
Mol. Cell. Biol.,
April 1, 2001;
21(7):
2413 - 2422.
[Abstract]
[Full Text]
|
 |
|

|
 |

|
 |
 
T. M. Ryan, C.-W. Sun, J. Ren, and T. M. Townes
Human {gamma}-globin gene promoter element regulates human {beta}-globin gene developmental specificity
Nucleic Acids Res.,
July 15, 2000;
28(14):
2736 - 2740.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. C. Perkins, K. R. Peterson, G. Stamatoyannopoulos, H. E. Witkowska, and S. H. Orkin
Fetal expression of a human Agamma globin transgene rescues globin chain imbalance but not hemolysis in EKLF null mouse embryos
Blood,
March 1, 2000;
95(5):
1827 - 1833.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
X. Chen, M. Reitman, and J. J. Bieker
Chromatin Structure and Transcriptional Control Elements of the Erythroid Kruppel-like Factor (EKLF) Gene
J. Biol. Chem.,
September 25, 1998;
273(39):
25031 - 25040.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
S.-K. Lim, H. Kim, S. K. Lim, A. b. Ali, Y. K. Lim, Y. Wang, S. M. Chong, F. Costantini, and H. Baumman
Increased Susceptibility in Hp Knockout Mice During Acute Hemolysis
Blood,
September 15, 1998;
92(6):
1870 - 1877.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
A. Spadaccini, P. A. Tilbrook, M. K. Sarna, M. Crossley, J. J. Bieker, and S. P. Klinken
Transcription Factor Erythroid Kruppel-like Factor (ELKF) Is Essential for the Erythropoietin-induced Hemoglobin Production but Not for Proliferation, Viability, or Morphological Maturation
J. Biol. Chem.,
September 11, 1998;
273(37):
23793 - 23798.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
L. Ouyang, X. Chen, and J. J. Bieker
Regulation of Erythroid Kruppel-like Factor (EKLF) Transcriptional Activity by Phosphorylation of a Protein Kinase Casein Kinase II Site within Its Interaction Domain
J. Biol. Chem.,
September 4, 1998;
273(36):
23019 - 23025.
[Abstract]
[Full Text]
[PDF]
|
 |
|

|
 |

|
 |
 
W. Zhang and J. J. Bieker
Acetylation and modulation of erythroid Kruppel-like factor (EKLF) activity by interaction with histone acetyltransferases
PNAS,
August 18, 1998;
95(17):
9855 - 9860.
[Abstract]
[Full Text]
[PDF]
|
 |
|
|
|