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Systematic transcriptome analysis reveals the function of alternative promoters in hematopoietic lineages

  • Tianzhe Zhang
  • , Biao Yang
  • , Wenhua Li
  • , Anjun Jiao
  • , Xiaoran Zhang
  • , Yao Ge
  • , Chen Yang
  • , Ran Zheng
  • , Chenming Sun
  • , Xiaofeng Yang
  • , Lei Lei
  • , Xiaobo Zhou
  • , Baojun Zhang
  • Xi'an Jiaotong University
  • Key Lab of the Ministry of Education for Process Control and Efficiency Egineering
  • Key Laboratory for Disease Prevention and Control and Health Promotion of Shaanxi Province
  • Wuhan University

Research output: Contribution to journalArticlepeer-review

Abstract

Alternative promoters are critical for lineage-specific gene expression; however, their systematic roles in hematopoiesis remain unclear. Here, we analyze 532 RNA sequencing (RNA-seq) datasets to construct a high-resolution promoter activity landscape. We identify 1,074 high-impact promoters, including novel lineage-specific switches in Pou2f1 and Ikzf1 . Pou2f1 P1 is active in T/NK cells/monocytes, while P2 is B-cell-/progenitor-specific. Ikzf1 P1 is active in B cells/monocytes, and P2 is T-cell-specific. CRISPRi-mediated repression validated their lineage-specific functions. We further pinpoint the following driving transcription factors: Spi1 (Ikzf1 P1), Foxo1 (Ikzf1 P2), Yy1 (Pou2f1 P1), and Pax5 (Pou2f1 P2). This study provides novel insights into promoter-mediated regulation in hematopoietic lineages and a foundation for targeting promoter-specific mechanisms in disease.

Original languageEnglish
Article number102791
JournalStem Cell Reports
Volume21
Issue number3
DOIs
StatePublished - 10 Mar 2026

Keywords

  • alternative promoters
  • transcription factors

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