Cargando…

ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons

Miles–Carpenter syndrome (MCS) was described in 1991 as an XLID syndrome with fingertip arches and contractures and mapped to proximal Xq. Patients had microcephaly, short stature, mild spasticity, thoracic scoliosis, hyperextendable MCP joints, rocker-bottom feet, hyperextended elbows and knees. A...

Descripción completa

Detalles Bibliográficos
Autores principales: May, Melanie, Hwang, Kyu-Seok, Miles, Judith, Williams, Charlie, Niranjan, Tejasvi, Kahler, Stephen G., Chiurazzi, Pietro, Steindl, Katharina, Van Der Spek, Peter J., Swagemakers, Sigrid, Mueller, Jennifer, Stefl, Shannon, Alexov, Emil, Ryu, Jeong-Im, Choi, Jung-Hwa, Kim, Hyun-Taek, Tarpey, Patrick, Neri, Giovanni, Holloway, Lynda, Skinner, Cindy, Stevenson, Roger E., Dorsky, Richard I., Wang, Tao, Schwartz, Charles E., Kim, Cheol-Hee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4527488/
https://www.ncbi.nlm.nih.gov/pubmed/26056227
http://dx.doi.org/10.1093/hmg/ddv208
_version_ 1782384572842901504
author May, Melanie
Hwang, Kyu-Seok
Miles, Judith
Williams, Charlie
Niranjan, Tejasvi
Kahler, Stephen G.
Chiurazzi, Pietro
Steindl, Katharina
Van Der Spek, Peter J.
Swagemakers, Sigrid
Mueller, Jennifer
Stefl, Shannon
Alexov, Emil
Ryu, Jeong-Im
Choi, Jung-Hwa
Kim, Hyun-Taek
Tarpey, Patrick
Neri, Giovanni
Holloway, Lynda
Skinner, Cindy
Stevenson, Roger E.
Dorsky, Richard I.
Wang, Tao
Schwartz, Charles E.
Kim, Cheol-Hee
author_facet May, Melanie
Hwang, Kyu-Seok
Miles, Judith
Williams, Charlie
Niranjan, Tejasvi
Kahler, Stephen G.
Chiurazzi, Pietro
Steindl, Katharina
Van Der Spek, Peter J.
Swagemakers, Sigrid
Mueller, Jennifer
Stefl, Shannon
Alexov, Emil
Ryu, Jeong-Im
Choi, Jung-Hwa
Kim, Hyun-Taek
Tarpey, Patrick
Neri, Giovanni
Holloway, Lynda
Skinner, Cindy
Stevenson, Roger E.
Dorsky, Richard I.
Wang, Tao
Schwartz, Charles E.
Kim, Cheol-Hee
author_sort May, Melanie
collection PubMed
description Miles–Carpenter syndrome (MCS) was described in 1991 as an XLID syndrome with fingertip arches and contractures and mapped to proximal Xq. Patients had microcephaly, short stature, mild spasticity, thoracic scoliosis, hyperextendable MCP joints, rocker-bottom feet, hyperextended elbows and knees. A mutation, p.L66H, in ZC4H2, was identified in a XLID re-sequencing project. Additional screening of linked families and next generation sequencing of XLID families identified three ZC4H2 mutations: p.R18K, p.R213W and p.V75in15aa. The families shared some relevant clinical features. In silico modeling of the mutant proteins indicated all alterations would destabilize the protein. Knockout mutations in zc4h2 were created in zebrafish and homozygous mutant larvae exhibited abnormal swimming, increased twitching, defective eye movement and pectoral fin contractures. Because several of the behavioral defects were consistent with hyperactivity, we examined the underlying neuronal defects and found that sensory neurons and motoneurons appeared normal. However, we observed a striking reduction in GABAergic interneurons. Analysis of cell-type-specific markers showed a specific loss of V2 interneurons in the brain and spinal cord, likely arising from mis-specification of neural progenitors. Injected human wt ZC4H2 rescued the mutant phenotype. Mutant zebrafish injected with human p.L66H or p.R213W mRNA failed to be rescued, while the p.R18K mRNA was able to rescue the interneuron defect. Our findings clearly support ZC4H2 as a novel XLID gene with a required function in interneuron development. Loss of function of ZC4H2 thus likely results in altered connectivity of many brain and spinal circuits.
format Online
Article
Text
id pubmed-4527488
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-45274882015-08-10 ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons May, Melanie Hwang, Kyu-Seok Miles, Judith Williams, Charlie Niranjan, Tejasvi Kahler, Stephen G. Chiurazzi, Pietro Steindl, Katharina Van Der Spek, Peter J. Swagemakers, Sigrid Mueller, Jennifer Stefl, Shannon Alexov, Emil Ryu, Jeong-Im Choi, Jung-Hwa Kim, Hyun-Taek Tarpey, Patrick Neri, Giovanni Holloway, Lynda Skinner, Cindy Stevenson, Roger E. Dorsky, Richard I. Wang, Tao Schwartz, Charles E. Kim, Cheol-Hee Hum Mol Genet Articles Miles–Carpenter syndrome (MCS) was described in 1991 as an XLID syndrome with fingertip arches and contractures and mapped to proximal Xq. Patients had microcephaly, short stature, mild spasticity, thoracic scoliosis, hyperextendable MCP joints, rocker-bottom feet, hyperextended elbows and knees. A mutation, p.L66H, in ZC4H2, was identified in a XLID re-sequencing project. Additional screening of linked families and next generation sequencing of XLID families identified three ZC4H2 mutations: p.R18K, p.R213W and p.V75in15aa. The families shared some relevant clinical features. In silico modeling of the mutant proteins indicated all alterations would destabilize the protein. Knockout mutations in zc4h2 were created in zebrafish and homozygous mutant larvae exhibited abnormal swimming, increased twitching, defective eye movement and pectoral fin contractures. Because several of the behavioral defects were consistent with hyperactivity, we examined the underlying neuronal defects and found that sensory neurons and motoneurons appeared normal. However, we observed a striking reduction in GABAergic interneurons. Analysis of cell-type-specific markers showed a specific loss of V2 interneurons in the brain and spinal cord, likely arising from mis-specification of neural progenitors. Injected human wt ZC4H2 rescued the mutant phenotype. Mutant zebrafish injected with human p.L66H or p.R213W mRNA failed to be rescued, while the p.R18K mRNA was able to rescue the interneuron defect. Our findings clearly support ZC4H2 as a novel XLID gene with a required function in interneuron development. Loss of function of ZC4H2 thus likely results in altered connectivity of many brain and spinal circuits. Oxford University Press 2015-09-01 2015-06-08 /pmc/articles/PMC4527488/ /pubmed/26056227 http://dx.doi.org/10.1093/hmg/ddv208 Text en © The Author 2015. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
May, Melanie
Hwang, Kyu-Seok
Miles, Judith
Williams, Charlie
Niranjan, Tejasvi
Kahler, Stephen G.
Chiurazzi, Pietro
Steindl, Katharina
Van Der Spek, Peter J.
Swagemakers, Sigrid
Mueller, Jennifer
Stefl, Shannon
Alexov, Emil
Ryu, Jeong-Im
Choi, Jung-Hwa
Kim, Hyun-Taek
Tarpey, Patrick
Neri, Giovanni
Holloway, Lynda
Skinner, Cindy
Stevenson, Roger E.
Dorsky, Richard I.
Wang, Tao
Schwartz, Charles E.
Kim, Cheol-Hee
ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title_full ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title_fullStr ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title_full_unstemmed ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title_short ZC4H2, an XLID gene, is required for the generation of a specific subset of CNS interneurons
title_sort zc4h2, an xlid gene, is required for the generation of a specific subset of cns interneurons
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4527488/
https://www.ncbi.nlm.nih.gov/pubmed/26056227
http://dx.doi.org/10.1093/hmg/ddv208
work_keys_str_mv AT maymelanie zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT hwangkyuseok zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT milesjudith zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT williamscharlie zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT niranjantejasvi zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT kahlerstepheng zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT chiurazzipietro zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT steindlkatharina zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT vanderspekpeterj zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT swagemakerssigrid zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT muellerjennifer zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT steflshannon zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT alexovemil zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT ryujeongim zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT choijunghwa zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT kimhyuntaek zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT tarpeypatrick zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT nerigiovanni zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT hollowaylynda zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT skinnercindy zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT stevensonrogere zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT dorskyrichardi zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT wangtao zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT schwartzcharlese zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons
AT kimcheolhee zc4h2anxlidgeneisrequiredforthegenerationofaspecificsubsetofcnsinterneurons