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Conference Paper: Homozygous Missense Mutation in ABR Causes Cerebellar Hypoplasia with Early Lethality - A New Condition Identified by Exome Sequencing?
Title | Homozygous Missense Mutation in ABR Causes Cerebellar Hypoplasia with Early Lethality - A New Condition Identified by Exome Sequencing? |
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Authors | |
Issue Date | 2014 |
Publisher | Medcom Limited. The Journal's web site is located at http://www.hkjpaed.org/index.asp |
Citation | The 2014 Joint Annual Scientific Meeting of the Hong Kong Paediatric Society and Hong Kong Paediatric Nurses Association, Hong Kong, China, 15 June 2014. In Hong Kong Journal of Paediatrics (New series), 2014, v. 19 n. 3, p. 206 How to Cite? |
Abstract | We performed whole exome sequencing (WES) in a
consanguineous Pakistani family with a recurrent pattern
of cerebellar hyposplasia, intra-uterine growth restriction,
and various CNS/non-CNS malformations, resulting in
early lethality (1 perinatal death and 1 intrauterine death).
Karyotype (in the first pregnancy) and oligonucleotide array
(in the 2nd affected pregnancy) were normal. Parents
declined post-mortem examination. By WES, a novel
homozygous missense mutation was identified in the ABR
gene (ABR: NM_021962.4:c.G2455T: p.A819S) in both
affected pregnancies. Both parents were identified to be
heterozygous of the same mutation while the healthy child
did not carry any mutation. The mutation is located in a
highly conserved region and is predicted to be highly
damaging by all the commonly used in silico mutation
prediction tools. The protein encoded by ABR gene contains
a GTPase-activating protein domain, a domain found in
members of the Rho family of GTP-binding proteins.
Previous reports showed that OPHN1, mutations in
which cause X-linked mental retardation with cerebellar
hypoplasia (OMIM300486), also encodes for a regulator
of GTPase-activating protein. Both OPHN1 and ABR are
highly expressed in the human brain especially in the
cerebellum, and both contain a GTPase-activating
domain. Rho proteins are important mediators of
intracellular signal transduction, which affects cell
migration and cell morphogenesis. Other studies have
demonstrated a regulatory role of Rho GTPase in
differentiation of cerebellar neurons, and that ethanolassociated
impairment of Rho GTPase might contribute
to brain defects in fetal alcohol syndrome. Further
functional studies, including zebrafish morpholino
studies, are currently ongoing. WES can be helpful in
individual families with undiagnosed lethal MCA
syndromes to identify potentially responsible autosomal
recessive mutations and may lead to a better understanding
of the role of various developmental pathways in human
embryogenesis. |
Description | Poster Presentation |
Persistent Identifier | http://hdl.handle.net/10722/199442 |
ISSN | 2023 Impact Factor: 0.1 2023 SCImago Journal Rankings: 0.117 |
DC Field | Value | Language |
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dc.contributor.author | Ying, D | en_US |
dc.contributor.author | Shek, NWM | en_US |
dc.contributor.author | Chu, WY | en_US |
dc.contributor.author | Yeung, KS | en_US |
dc.contributor.author | Leung, KC | en_US |
dc.contributor.author | Tang, MHY | en_US |
dc.contributor.author | Kan, SYA | en_US |
dc.contributor.author | Chan, YK | en_US |
dc.contributor.author | Chung, BHY | - |
dc.date.accessioned | 2014-07-22T01:18:38Z | - |
dc.date.available | 2014-07-22T01:18:38Z | - |
dc.date.issued | 2014 | en_US |
dc.identifier.citation | The 2014 Joint Annual Scientific Meeting of the Hong Kong Paediatric Society and Hong Kong Paediatric Nurses Association, Hong Kong, China, 15 June 2014. In Hong Kong Journal of Paediatrics (New series), 2014, v. 19 n. 3, p. 206 | en_US |
dc.identifier.issn | 1013-9923 | - |
dc.identifier.uri | http://hdl.handle.net/10722/199442 | - |
dc.description | Poster Presentation | - |
dc.description.abstract | We performed whole exome sequencing (WES) in a consanguineous Pakistani family with a recurrent pattern of cerebellar hyposplasia, intra-uterine growth restriction, and various CNS/non-CNS malformations, resulting in early lethality (1 perinatal death and 1 intrauterine death). Karyotype (in the first pregnancy) and oligonucleotide array (in the 2nd affected pregnancy) were normal. Parents declined post-mortem examination. By WES, a novel homozygous missense mutation was identified in the ABR gene (ABR: NM_021962.4:c.G2455T: p.A819S) in both affected pregnancies. Both parents were identified to be heterozygous of the same mutation while the healthy child did not carry any mutation. The mutation is located in a highly conserved region and is predicted to be highly damaging by all the commonly used in silico mutation prediction tools. The protein encoded by ABR gene contains a GTPase-activating protein domain, a domain found in members of the Rho family of GTP-binding proteins. Previous reports showed that OPHN1, mutations in which cause X-linked mental retardation with cerebellar hypoplasia (OMIM300486), also encodes for a regulator of GTPase-activating protein. Both OPHN1 and ABR are highly expressed in the human brain especially in the cerebellum, and both contain a GTPase-activating domain. Rho proteins are important mediators of intracellular signal transduction, which affects cell migration and cell morphogenesis. Other studies have demonstrated a regulatory role of Rho GTPase in differentiation of cerebellar neurons, and that ethanolassociated impairment of Rho GTPase might contribute to brain defects in fetal alcohol syndrome. Further functional studies, including zebrafish morpholino studies, are currently ongoing. WES can be helpful in individual families with undiagnosed lethal MCA syndromes to identify potentially responsible autosomal recessive mutations and may lead to a better understanding of the role of various developmental pathways in human embryogenesis. | - |
dc.language | eng | en_US |
dc.publisher | Medcom Limited. The Journal's web site is located at http://www.hkjpaed.org/index.asp | - |
dc.relation.ispartof | Hong Kong Journal of Paediatrics (New series) | en_US |
dc.title | Homozygous Missense Mutation in ABR Causes Cerebellar Hypoplasia with Early Lethality - A New Condition Identified by Exome Sequencing? | en_US |
dc.type | Conference_Paper | en_US |
dc.identifier.email | Ying, D: jonson@hku.hk | en_US |
dc.identifier.email | Shek, NWM: sheknoel@hku.hk | en_US |
dc.identifier.email | Chu, WY: chuwyy@hku.hk | en_US |
dc.identifier.email | Tang, MHY: mhytang@hkucc.hku.hk | en_US |
dc.identifier.email | Kan, SYA: kansya@hku.hk | en_US |
dc.identifier.email | Chan, YK: ykchanc@hku.hk | en_US |
dc.identifier.email | Chung, BHY: bhychung@hku.hk | en_US |
dc.identifier.authority | Tang, MHY=rp01701 | en_US |
dc.identifier.authority | Chan, YK=rp00453 | en_US |
dc.identifier.authority | Chung, BHY=rp00473 | en_US |
dc.description.nature | published_or_final_version | - |
dc.identifier.hkuros | 230883 | en_US |
dc.identifier.hkuros | 232896 | - |
dc.identifier.volume | 19 | en_US |
dc.identifier.issue | 3 | - |
dc.identifier.spage | 206 | - |
dc.identifier.epage | 206 | - |
dc.publisher.place | Hong Kong | - |
dc.identifier.issnl | 1013-9923 | - |