Cargando…

Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia

Classical aniridia is a congenital and progressive panocular disorder almost exclusively caused by heterozygous loss-of-function variants at the PAX6 locus. We report nine individuals from five families with severe aniridia and/or microphthalmia (with no detectable PAX6 mutation) with ultrarare mono...

Descripción completa

Detalles Bibliográficos
Autores principales: Hall, Hildegard Nikki, Bengani, Hemant, Hufnagel, Robert B., Damante, Giuseppe, Ansari, Morad, Marsh, Joseph A., Grimes, Graeme R., von Kriegsheim, Alex, Moore, David, McKie, Lisa, Rahmat, Jamalia, Mio, Catia, Blyth, Moira, Keng, Wee Teik, Islam, Lily, McEntargart, Meriel, Mannens, Marcel M., Heyningen, Veronica Van, Rainger, Joe, Brooks, Brian P., FitzPatrick, David R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9681113/
https://www.ncbi.nlm.nih.gov/pubmed/36413568
http://dx.doi.org/10.1371/journal.pone.0268149
_version_ 1784834547537412096
author Hall, Hildegard Nikki
Bengani, Hemant
Hufnagel, Robert B.
Damante, Giuseppe
Ansari, Morad
Marsh, Joseph A.
Grimes, Graeme R.
von Kriegsheim, Alex
Moore, David
McKie, Lisa
Rahmat, Jamalia
Mio, Catia
Blyth, Moira
Keng, Wee Teik
Islam, Lily
McEntargart, Meriel
Mannens, Marcel M.
Heyningen, Veronica Van
Rainger, Joe
Brooks, Brian P.
FitzPatrick, David R.
author_facet Hall, Hildegard Nikki
Bengani, Hemant
Hufnagel, Robert B.
Damante, Giuseppe
Ansari, Morad
Marsh, Joseph A.
Grimes, Graeme R.
von Kriegsheim, Alex
Moore, David
McKie, Lisa
Rahmat, Jamalia
Mio, Catia
Blyth, Moira
Keng, Wee Teik
Islam, Lily
McEntargart, Meriel
Mannens, Marcel M.
Heyningen, Veronica Van
Rainger, Joe
Brooks, Brian P.
FitzPatrick, David R.
author_sort Hall, Hildegard Nikki
collection PubMed
description Classical aniridia is a congenital and progressive panocular disorder almost exclusively caused by heterozygous loss-of-function variants at the PAX6 locus. We report nine individuals from five families with severe aniridia and/or microphthalmia (with no detectable PAX6 mutation) with ultrarare monoallelic missense variants altering the Arg51 codon of MAB21L1. These mutations occurred de novo in 3/5 families, with the remaining families being compatible with autosomal dominant inheritance. Mice engineered to carry the p.Arg51Leu change showed a highly-penetrant optic disc anomaly in heterozygous animals with severe microphthalmia in homozygotes. Substitutions of the same codon (Arg51) in MAB21L2, a close homolog of MAB21L1, cause severe ocular and skeletal malformations in humans and mice. The predicted nucleotidyltransferase function of MAB21L1 could not be demonstrated using purified protein with a variety of nucleotide substrates and oligonucleotide activators. Induced expression of GFP-tagged wildtype and mutant MAB21L1 in human cells caused only modest transcriptional changes. Mass spectrometry of immunoprecipitated protein revealed that both mutant and wildtype MAB21L1 associate with transcription factors that are known regulators of PAX6 (MEIS1, MEIS2 and PBX1) and with poly(A) RNA binding proteins. Arg51 substitutions reduce the association of wild-type MAB21L1 with TBL1XR1, a component of the NCoR complex. We found limited evidence for mutation-specific interactions with MSI2/Musashi-2, an RNA-binding proteins with effects on many different developmental pathways. Given that biallelic loss-of-function variants in MAB21L1 result in a milder eye phenotype we suggest that Arg51-altering monoallelic variants most plausibly perturb eye development via a gain-of-function mechanism.
format Online
Article
Text
id pubmed-9681113
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-96811132022-11-23 Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia Hall, Hildegard Nikki Bengani, Hemant Hufnagel, Robert B. Damante, Giuseppe Ansari, Morad Marsh, Joseph A. Grimes, Graeme R. von Kriegsheim, Alex Moore, David McKie, Lisa Rahmat, Jamalia Mio, Catia Blyth, Moira Keng, Wee Teik Islam, Lily McEntargart, Meriel Mannens, Marcel M. Heyningen, Veronica Van Rainger, Joe Brooks, Brian P. FitzPatrick, David R. PLoS One Research Article Classical aniridia is a congenital and progressive panocular disorder almost exclusively caused by heterozygous loss-of-function variants at the PAX6 locus. We report nine individuals from five families with severe aniridia and/or microphthalmia (with no detectable PAX6 mutation) with ultrarare monoallelic missense variants altering the Arg51 codon of MAB21L1. These mutations occurred de novo in 3/5 families, with the remaining families being compatible with autosomal dominant inheritance. Mice engineered to carry the p.Arg51Leu change showed a highly-penetrant optic disc anomaly in heterozygous animals with severe microphthalmia in homozygotes. Substitutions of the same codon (Arg51) in MAB21L2, a close homolog of MAB21L1, cause severe ocular and skeletal malformations in humans and mice. The predicted nucleotidyltransferase function of MAB21L1 could not be demonstrated using purified protein with a variety of nucleotide substrates and oligonucleotide activators. Induced expression of GFP-tagged wildtype and mutant MAB21L1 in human cells caused only modest transcriptional changes. Mass spectrometry of immunoprecipitated protein revealed that both mutant and wildtype MAB21L1 associate with transcription factors that are known regulators of PAX6 (MEIS1, MEIS2 and PBX1) and with poly(A) RNA binding proteins. Arg51 substitutions reduce the association of wild-type MAB21L1 with TBL1XR1, a component of the NCoR complex. We found limited evidence for mutation-specific interactions with MSI2/Musashi-2, an RNA-binding proteins with effects on many different developmental pathways. Given that biallelic loss-of-function variants in MAB21L1 result in a milder eye phenotype we suggest that Arg51-altering monoallelic variants most plausibly perturb eye development via a gain-of-function mechanism. Public Library of Science 2022-11-22 /pmc/articles/PMC9681113/ /pubmed/36413568 http://dx.doi.org/10.1371/journal.pone.0268149 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Hall, Hildegard Nikki
Bengani, Hemant
Hufnagel, Robert B.
Damante, Giuseppe
Ansari, Morad
Marsh, Joseph A.
Grimes, Graeme R.
von Kriegsheim, Alex
Moore, David
McKie, Lisa
Rahmat, Jamalia
Mio, Catia
Blyth, Moira
Keng, Wee Teik
Islam, Lily
McEntargart, Meriel
Mannens, Marcel M.
Heyningen, Veronica Van
Rainger, Joe
Brooks, Brian P.
FitzPatrick, David R.
Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title_full Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title_fullStr Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title_full_unstemmed Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title_short Monoallelic variants resulting in substitutions of MAB21L1 Arg51 Cause Aniridia and microphthalmia
title_sort monoallelic variants resulting in substitutions of mab21l1 arg51 cause aniridia and microphthalmia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9681113/
https://www.ncbi.nlm.nih.gov/pubmed/36413568
http://dx.doi.org/10.1371/journal.pone.0268149
work_keys_str_mv AT hallhildegardnikki monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT benganihemant monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT hufnagelrobertb monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT damantegiuseppe monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT ansarimorad monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT marshjosepha monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT grimesgraemer monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT vonkriegsheimalex monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT mooredavid monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT mckielisa monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT rahmatjamalia monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT miocatia monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT blythmoira monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT kengweeteik monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT islamlily monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT mcentargartmeriel monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT mannensmarcelm monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT heyningenveronicavan monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT raingerjoe monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT brooksbrianp monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia
AT fitzpatrickdavidr monoallelicvariantsresultinginsubstitutionsofmab21l1arg51causeaniridiaandmicrophthalmia