Chromosome positioning in interphase nuclei of hematopoietic stem cell and myeloid precursor

Author:

Lomiento Mariana,Mammoli Fabiana,Mazza Emilia Maria Cristina,Bicciato Silvio,Ferrari Sergio

Abstract

Human myelopoiesis is an intriguing biological process during which multipotent stem cells limit their differentiation potential generating precursors that evolve into terminally differentiated cells. The differentiation process is correlated with differential gene expression and changes in nuclear architecture. In interphase, chromosomes are distinct entities known as chromosome territories and they show a radial localization that could result in a constrain of inter-homologous distance. This element plays a role in genome stability and gene expression. Here, we provide the first experimental evidence of 3D chromosomal arrangement considering two steps of human normal myelopoiesis. Specifically, multicolor 3D-FISH and 3D image analysis revealed that, in both normal human hematopoietic stem cells and myelod precursors CD14-, chromosomal position is correlated with gene density. However, we observed that inter-homologue distances are totally different during differentiation. This could be associated with differential gene expression that we found comparing the two cell types. Our results disclose an unprecedented framework relevant for deciphering the genomic mechanisms at the base of normal human myelopoiesis.

Publisher

PAGEPress Publications

Subject

Hematology

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multilevel view on chromatin architecture alterations in cancer;Frontiers in Genetics;2022-11-18

2. Chromosome Territories in Hematological Malignancies;Cells;2022-04-17

3. Mitotic Antipairing of Homologous Chromosomes;Nuclear, Chromosomal, and Genomic Architecture in Biology and Medicine;2022

4. Alterations to Genome Organisation in Stem Cells, Their Differentiation and Associated Diseases;Nuclear, Chromosomal, and Genomic Architecture in Biology and Medicine;2022

5. Regulation of Chromatin Organization in Cell Stemness: The Emerging Role of Long Non-coding RNAs;Stem Cell Reviews and Reports;2021-06-28

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