Cargando…

A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice

Mouse models of red blood cell abnormalities are important for understanding the underlying molecular mechanisms of human erythrocytic diseases. DBA.B6-Mha (Microcytic hypochromic anemia) congenic mice were generated from the cross between N-ethyl-N-nitrosourea (ENU)-mutagenized male C57BL/6J and fe...

Descripción completa

Detalles Bibliográficos
Autores principales: Miyasaka, Yuki, Okuda, Kento, Miura, Ikuo, Motegi, Hiromi, Wakana, Shigeharu, Ohno, Tamio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Association for Laboratory Animal Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9671764/
https://www.ncbi.nlm.nih.gov/pubmed/35527013
http://dx.doi.org/10.1538/expanim.22-0032
_version_ 1784832617753870336
author Miyasaka, Yuki
Okuda, Kento
Miura, Ikuo
Motegi, Hiromi
Wakana, Shigeharu
Ohno, Tamio
author_facet Miyasaka, Yuki
Okuda, Kento
Miura, Ikuo
Motegi, Hiromi
Wakana, Shigeharu
Ohno, Tamio
author_sort Miyasaka, Yuki
collection PubMed
description Mouse models of red blood cell abnormalities are important for understanding the underlying molecular mechanisms of human erythrocytic diseases. DBA.B6-Mha (Microcytic hypochromic anemia) congenic mice were generated from the cross between N-ethyl-N-nitrosourea (ENU)-mutagenized male C57BL/6J and female DBA/2J mice as part of the RIKEN large-scale ENU mutagenesis project. The mice were established by backcrossing with DBA/2J mice for more than 20 generations. These mice showed autosomal-dominant microcytic hypochromic anemia with decreased mean corpuscular volume (MCV) and mean corpuscular hemoglobin (MCH) levels and increased red blood cell distribution width (RDW) and plasma ferritin levels. Linkage analysis indicated that the Mha locus was located within an interval of approximately 1.95-Mb between D16Nut1 (58.35 Mb) and D16Mit185 (60.30 Mb) on mouse chromosome 16. Mutation analysis revealed that DBA.B6-Mha mice had a point mutation (c.921-2A>G) at the acceptor site of intron 4 in the coproporphyrinogen oxidase (Cpox) gene, a heme-synthesizing gene. RT-PCR revealed that the Cpox mRNA in DBA.B6-Mha mice caused splicing errors. Our results suggest that microcytic hypochromic anemia in DBA.B6-Mha mice is owing to impaired heme synthesis caused by splice mutations in Cpox. Therefore, the DBA.B6-Mha mice may be used to elucidate the molecular mechanisms underlying microcytic hypochromic anemia caused by mutations in Cpox. Although low MCV levels are known to confer malarial resistance to the host, there were no marked changes in the susceptibility of DBA.B6-Mha mice to rodent malarial (Plasmodium yoelii 17XL) infection.
format Online
Article
Text
id pubmed-9671764
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Japanese Association for Laboratory Animal Science
record_format MEDLINE/PubMed
spelling pubmed-96717642022-11-18 A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice Miyasaka, Yuki Okuda, Kento Miura, Ikuo Motegi, Hiromi Wakana, Shigeharu Ohno, Tamio Exp Anim Original Mouse models of red blood cell abnormalities are important for understanding the underlying molecular mechanisms of human erythrocytic diseases. DBA.B6-Mha (Microcytic hypochromic anemia) congenic mice were generated from the cross between N-ethyl-N-nitrosourea (ENU)-mutagenized male C57BL/6J and female DBA/2J mice as part of the RIKEN large-scale ENU mutagenesis project. The mice were established by backcrossing with DBA/2J mice for more than 20 generations. These mice showed autosomal-dominant microcytic hypochromic anemia with decreased mean corpuscular volume (MCV) and mean corpuscular hemoglobin (MCH) levels and increased red blood cell distribution width (RDW) and plasma ferritin levels. Linkage analysis indicated that the Mha locus was located within an interval of approximately 1.95-Mb between D16Nut1 (58.35 Mb) and D16Mit185 (60.30 Mb) on mouse chromosome 16. Mutation analysis revealed that DBA.B6-Mha mice had a point mutation (c.921-2A>G) at the acceptor site of intron 4 in the coproporphyrinogen oxidase (Cpox) gene, a heme-synthesizing gene. RT-PCR revealed that the Cpox mRNA in DBA.B6-Mha mice caused splicing errors. Our results suggest that microcytic hypochromic anemia in DBA.B6-Mha mice is owing to impaired heme synthesis caused by splice mutations in Cpox. Therefore, the DBA.B6-Mha mice may be used to elucidate the molecular mechanisms underlying microcytic hypochromic anemia caused by mutations in Cpox. Although low MCV levels are known to confer malarial resistance to the host, there were no marked changes in the susceptibility of DBA.B6-Mha mice to rodent malarial (Plasmodium yoelii 17XL) infection. Japanese Association for Laboratory Animal Science 2022-05-09 2022 /pmc/articles/PMC9671764/ /pubmed/35527013 http://dx.doi.org/10.1538/expanim.22-0032 Text en ©2022 Japanese Association for Laboratory Animal Science https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License. (CC-BY-NC-ND 4.0: https://creativecommons.org/licenses/by-nc-nd/4.0/)
spellingShingle Original
Miyasaka, Yuki
Okuda, Kento
Miura, Ikuo
Motegi, Hiromi
Wakana, Shigeharu
Ohno, Tamio
A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title_full A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title_fullStr A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title_full_unstemmed A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title_short A novel ENU-induced Cpox mutation causes microcytic hypochromic anemia in mice
title_sort novel enu-induced cpox mutation causes microcytic hypochromic anemia in mice
topic Original
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9671764/
https://www.ncbi.nlm.nih.gov/pubmed/35527013
http://dx.doi.org/10.1538/expanim.22-0032
work_keys_str_mv AT miyasakayuki anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT okudakento anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT miuraikuo anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT motegihiromi anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT wakanashigeharu anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT ohnotamio anovelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT miyasakayuki novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT okudakento novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT miuraikuo novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT motegihiromi novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT wakanashigeharu novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice
AT ohnotamio novelenuinducedcpoxmutationcausesmicrocytichypochromicanemiainmice