Figure 7.
Transcriptional mechanisms of gene activation in regenerative erythropoiesis. (A) Ssx2ip activities are involved in regulating centrosome stability.35 In acute anemia, chromatin accessibility increased at an intronic GATA and TAL1-occupied E-box–GATA element in the Ssx2ip locus. Our model predicts that this element facilitates Ssx2ip upregulation in anemia. Ssx2ip knockdown in erythroid precursors isolated from anemic spleen revealed a role for Ssx2ip in colony formation and cell cycle regulation. (B) Expression levels of genes associated with S14E-like cis elements are inversely correlated with hematocrit levels in PHZ-induced models of acute anemia. Orange line, hematocrit levels; blue line, relative Ssx2ip expression.

Transcriptional mechanisms of gene activation in regenerative erythropoiesis. (A) Ssx2ip activities are involved in regulating centrosome stability.35 In acute anemia, chromatin accessibility increased at an intronic GATA and TAL1-occupied E-box–GATA element in the Ssx2ip locus. Our model predicts that this element facilitates Ssx2ip upregulation in anemia. Ssx2ip knockdown in erythroid precursors isolated from anemic spleen revealed a role for Ssx2ip in colony formation and cell cycle regulation. (B) Expression levels of genes associated with S14E-like cis elements are inversely correlated with hematocrit levels in PHZ-induced models of acute anemia. Orange line, hematocrit levels; blue line, relative Ssx2ip expression.

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