Literature DB >> 28212192

Genetic control of erythropoiesis.

Laxminath Tumburu1, Swee Lay Thein.   

Abstract

PURPOSE OF REVIEW: The discovery of several genetic variants associated with erythroid traits and subsequent elucidation of their functional mechanisms are exemplars of the power of the new genetic and genomic technology. The present review highlights findings from recent genetic studies related to the control of erythropoiesis and dyserythropoiesis, and fetal hemoglobin, an erythroid-related trait. RECENT
FINDINGS: Identification of the genetic modulators of erythropoiesis involved two approaches: genome-wide association studies (GWASs) using single nucleotide polymorphism (SNP) arrays that revealed the common genetic variants associated with erythroid phenotypes (hemoglobin, red cell count, MCV, MCH) and fetal hemoglobin; and massive parallel sequencing such as whole genome sequencing (WGS) and whole exome sequencing (WES) that led to the discovery of the rarer variants (GFI1B, SBDS, RPS19, PKLR, EPO, EPOR, KLF1, GATA1). Functional and genomic studies aided by computational approaches and gene editing technology refined the regions encompassing the putative causative SNPs and confirmed their regulatory role at different stages of erythropoiesis.
SUMMARY: Five meta-analysis of GWASs identified 17 genetic loci associated with erythroid phenotypes, which are potential regulators of erythropoiesis. Some of these loci showed pleiotropy associated with multiple erythroid traits, suggesting undiscovered molecular mechanisms and challenges underlying erythroid biology. Other sequencing strategies (WGS and WES) further elucidated the role of rare variants in dyserythropoiesis. Integration of common and rare variant studies with functional assays involving latest genome-editing technologies will significantly improve our understanding of the genetics underlying erythropoiesis and erythroid disorders.

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Year:  2017        PMID: 28212192     DOI: 10.1097/MOH.0000000000000333

Source DB:  PubMed          Journal:  Curr Opin Hematol        ISSN: 1065-6251            Impact factor:   3.284


  6 in total

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3.  Identification of the transcription factor MAZ as a regulator of erythropoiesis.

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Journal:  Blood Adv       Date:  2021-08-10

4.  An in vivo screen of noncoding loci reveals that Daedalus is a gatekeeper of an Ikaros-dependent checkpoint during haematopoiesis.

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Journal:  Proc Natl Acad Sci U S A       Date:  2021-01-19       Impact factor: 12.779

5.  Multiple myeloma hinders erythropoiesis and causes anaemia owing to high levels of CCL3 in the bone marrow microenvironment.

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Journal:  Sci Rep       Date:  2020-11-25       Impact factor: 4.379

6.  EpoR stimulates rapid cycling and larger red cells during mouse and human erythropoiesis.

Authors:  Daniel Hidalgo; Jacob Bejder; Ramona Pop; Kyle Gellatly; Yung Hwang; S Maxwell Scalf; Anna E Eastman; Jane-Jane Chen; Lihua Julie Zhu; Jules A A C Heuberger; Shangqin Guo; Mark J Koury; Nikolai Baastrup Nordsborg; Merav Socolovsky
Journal:  Nat Commun       Date:  2021-12-17       Impact factor: 14.919

  6 in total

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