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Am J Physiol Regul Integr Comp Physiol (November 21, 2002). doi:10.1152/ajpregu.00461.2002
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Articles in PresS, published online ahead of print November 21, 2002
Am J Physiol Regu Physiol, 10.1152/ajpregu.00461.2002
Submitted on July 29, 2002
Accepted on November 15, 2002

Nucleoside triphosphate pattern of avian embryonic red cells: role of RNA degradation and AMP deaminase/5'-nucleotidase activity

Rosemarie Baumann1*, Robert Goetz1, and Stefanie Dragon1

1 Physiology, University of Regensburg, Regensburg, Germany

* To whom correspondence should be addressed. E-mail: rosemarie.baumann{at}vkl.uni-regensburg.de.

During terminal erythroid differentiation, degradation of RNA is a potential source for nucleotide triphosphates (NTPs) that act as allosteric effectors of hemoglobin. In this investigation, we have assessed the developmental profile of RNA and purine/pyrimidine trinucleotides in circulating embryonic chick red blood cells (RBC). Extensive changes of the NTP pattern are observed which differ significantly from what is observed for adult RBC. The biochemical mechanisms have not been identified yet. Therefore, we studied the role of AMP deaminase and IMP/GMP 5'-nucleotidase which are key enzymes for the regulation of the purine nucleotide pool. Finally, we tested the effect of major NTPs on the oxygen affinity of embryonic/adult hemoglobin.- Results: 1) Together with ATP, UTP and CTP serve as allosteric effectors of hemoglobin. 2) Degradation of erythroid RNA is apparently a major source for NTPs. 3) Developmental changes of nucleotide content depend on the activities of key enzymes (AMP deaminase, IMP/GMP 5'-nucleotidase, and pyrimidine 5'-nucleotidase). 4) Oxygen dependent hormonal regulation of AMP deaminase adjusts the red cell ATP concentration and therefore the hemoglobin oxygen affinity.







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