Search PubMed⌕ Search

PubMed · 2683003

[Macrocytic anemia].

Abstract

Macrocytic and/or megaloblastic anaemias of infants and children are more often due to a defective bone marrow production than to haemolysis. They are mostly related to folate and/or cobalamin deficiency or to a disturbance in the metabolism of one of these vitamins (enzyme deficiencies or defect of synthesis of their active forms). More rarely, these anaemias are associated with congenital deficiency of the enzymes involved in pyrimidine or purine biosynthesis. A few cases of thiamine-responsive megaloblastic anaemia have been reported. Some blood diseases may also associated with macrocytic anaemia. Finally, many drugs (antifolic agents, antipurine or antipyrimidine compounds) may induce macrocytic anaemia.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J Zittoun. 1989-10-21. [Macrocytic anemia].. https://pubmed.ncbi.nlm.nih.gov/2683003/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

E2f4 regulates fetal erythropoiesis through the promotion of cellular proliferation.

The E2F proteins are major regulators of the transcriptional program required to coordinate cell cycle progression and exit. In particular, E2f4 has been proposed to be the principal family member responsible for the regulation of cell cycle exit chiefly through its transcriptional repressive properties. We have previously shown that E2f4(-/-) mice display a marked macrocytic anemia implicating E2f4 in the regulation of erythropoiesis. However, these studies could not distinguish whether E2f4 was required for differentiation, survival, or proliferation control. Here, we describe a novel function for E2f4 in the promotion of erythroid proliferation. We show that loss of E2f4 results in an impaired expansion of the fetal erythroid compartment in vivo that is associated with impaired cell cycle progression and decreased erythroid proliferation. Consistent with these observations, cDNA microarray analysis reveals cell cycle control genes as one of the major class of genes down-regulated in E2f4(-/-) FLs, and we provide evidence that E2f4 may directly regulate the transcriptional expression of a number of these genes. We conclude that the macrocytic anemia of E2f4(-/-) mice results primarily from impaired cellular proliferation and that the major role of E2f4 in fetal erythropoiesis is to promote cell cycle progression and cellular proliferation.

Anemia, Macrocytic↗