Transcriptionally regulated energy metabolism drives early erythropoiesis
收藏NIAID Data Ecosystem2026-03-12 收录
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This SuperSeries is composed of the SubSeries listed below. Refer to individual Series
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创建时间:
2021-06-09
相关数据集
Transcriptionally regulated energy metabolism drives early erythropoiesis (RRBS). Transcriptionally regulated energy metabolism drives early erythropoiesis (RRBS)
Transcription and metabolism both influence cell function yet dedicated transcriptional control of metabolic pathways that regulate cell fate has rarely been defined. Through a chemical suppressor scr
NIAID Data Ecosystem40
Transcriptionally regulated energy metabolism drives early erythropoiesis (ChIP-Seq)
Transcription and metabolism both influence cell function but dedicated transcriptional control of metabolic pathways regulating cell fate has rarely been defined. Zebrafish moonshine mutant embryos d
NIAID Data Ecosystem20
Single cell RNA-seq analysis for early erythroblasts in spleen and bone marrow (BM) with or without mitochondria transfer
Single cell RNA-seq analysis for early erythroblasts in spleen and BM with or without mito-Dendra2 fluorescence signal after macrophage infusion upon PHZ treatment Mito-dendra2 labelled macrophages we
NIAID Data Ecosystem20
Transcriptionally regulated energy metabolism drives early erythropoiesis (tif1g RNA-seq)
Transcription and metabolism both influence cell function yet dedicated transcriptional control of metabolic pathways that regulate cell fate has rarely been defined. Through a chemical suppressor scr
NIAID Data Ecosystem30
Transcriptionally regulated energy metabolism drives early erythropoiesis (RNA-Seq). Transcriptionally regulated energy metabolism drives early erythropoiesis (RNA-Seq)
Transcription and metabolism both influence cell function but dedicated transcriptional control of metabolic pathways regulating cell fate has rarely been defined. Zebrafish moonshine mutant embryos d
NIAID Data Ecosystem20



