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Biallelic variants in CSMD1 are implicated in a neurodevelopmental disorder with intellectual disability and variable cortical malformations
by
van Jaarsveld, Richard H.
, Srivastava, Kinshuk Raj
, Wheeler, Marsha M.
, Umair, Muhammad
, Pappas, John G.
, Rappold, Gudrun A.
, Johnson, Matthew B.
, Giltay, Jacques C.
, Srivastava, Anshika
, Khan, Amjad
, Rafiullah, Rafiullah
, Dawidziuk, Mateusz
, van Gassen, K. L. I.
, Tsan, Yao-Chang
, Lehalle, Daphné
, Bamshad, Michael J.
, Narayanan, Vinodh
, Peirent, Emily R.
, Wiszniewski, Wojciech
, Geneviève, David
, Rabin, Rachel
, Keegan, Catherine E.
, Khan, Shahid Niaz
, Jantti, Henna
, Gawlinski, Pawel
, Orenstein, Naama
, Guxholli, Alba
, Werren, Elizabeth A.
, Oegema, Renske
, Bielas, Stephanie L.
in
13/1
/ 13/100
/ 13/106
/ 13/51
/ 14
/ 14/19
/ 38
/ 38/23
/ 631/136/368/2430
/ 631/378/2571/1696
/ Alleles
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain architecture
/ Brain research
/ Cell Biology
/ Cell Culture
/ Cell Differentiation - genetics
/ Central nervous system
/ Child
/ Child development
/ Child, Preschool
/ Complement system
/ Disease
/ Embryo cells
/ Female
/ Forebrain
/ Genetics
/ Genomics
/ Humans
/ Immune response
/ Immunology
/ Innate immunity
/ Intellectual disabilities
/ Intellectual Disability - genetics
/ Intellectual Disability - pathology
/ Lectins
/ Life Sciences
/ Male
/ Malformations of Cortical Development - genetics
/ Malformations of Cortical Development - pathology
/ Medicine
/ Membrane Proteins - genetics
/ Membrane Proteins - metabolism
/ Mental disorders
/ Microencephaly
/ Nervous system
/ Neurodevelopmental disorders
/ Neurodevelopmental Disorders - genetics
/ Organoids
/ Pediatrics
/ Polymicrogyria
/ Risk factors
/ Stem cells
/ Synaptogenesis
/ Tumor Suppressor Proteins
/ Zoology
2024
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Biallelic variants in CSMD1 are implicated in a neurodevelopmental disorder with intellectual disability and variable cortical malformations
by
van Jaarsveld, Richard H.
, Srivastava, Kinshuk Raj
, Wheeler, Marsha M.
, Umair, Muhammad
, Pappas, John G.
, Rappold, Gudrun A.
, Johnson, Matthew B.
, Giltay, Jacques C.
, Srivastava, Anshika
, Khan, Amjad
, Rafiullah, Rafiullah
, Dawidziuk, Mateusz
, van Gassen, K. L. I.
, Tsan, Yao-Chang
, Lehalle, Daphné
, Bamshad, Michael J.
, Narayanan, Vinodh
, Peirent, Emily R.
, Wiszniewski, Wojciech
, Geneviève, David
, Rabin, Rachel
, Keegan, Catherine E.
, Khan, Shahid Niaz
, Jantti, Henna
, Gawlinski, Pawel
, Orenstein, Naama
, Guxholli, Alba
, Werren, Elizabeth A.
, Oegema, Renske
, Bielas, Stephanie L.
in
13/1
/ 13/100
/ 13/106
/ 13/51
/ 14
/ 14/19
/ 38
/ 38/23
/ 631/136/368/2430
/ 631/378/2571/1696
/ Alleles
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain architecture
/ Brain research
/ Cell Biology
/ Cell Culture
/ Cell Differentiation - genetics
/ Central nervous system
/ Child
/ Child development
/ Child, Preschool
/ Complement system
/ Disease
/ Embryo cells
/ Female
/ Forebrain
/ Genetics
/ Genomics
/ Humans
/ Immune response
/ Immunology
/ Innate immunity
/ Intellectual disabilities
/ Intellectual Disability - genetics
/ Intellectual Disability - pathology
/ Lectins
/ Life Sciences
/ Male
/ Malformations of Cortical Development - genetics
/ Malformations of Cortical Development - pathology
/ Medicine
/ Membrane Proteins - genetics
/ Membrane Proteins - metabolism
/ Mental disorders
/ Microencephaly
/ Nervous system
/ Neurodevelopmental disorders
/ Neurodevelopmental Disorders - genetics
/ Organoids
/ Pediatrics
/ Polymicrogyria
/ Risk factors
/ Stem cells
/ Synaptogenesis
/ Tumor Suppressor Proteins
/ Zoology
2024
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Biallelic variants in CSMD1 are implicated in a neurodevelopmental disorder with intellectual disability and variable cortical malformations
by
van Jaarsveld, Richard H.
, Srivastava, Kinshuk Raj
, Wheeler, Marsha M.
, Umair, Muhammad
, Pappas, John G.
, Rappold, Gudrun A.
, Johnson, Matthew B.
, Giltay, Jacques C.
, Srivastava, Anshika
, Khan, Amjad
, Rafiullah, Rafiullah
, Dawidziuk, Mateusz
, van Gassen, K. L. I.
, Tsan, Yao-Chang
, Lehalle, Daphné
, Bamshad, Michael J.
, Narayanan, Vinodh
, Peirent, Emily R.
, Wiszniewski, Wojciech
, Geneviève, David
, Rabin, Rachel
, Keegan, Catherine E.
, Khan, Shahid Niaz
, Jantti, Henna
, Gawlinski, Pawel
, Orenstein, Naama
, Guxholli, Alba
, Werren, Elizabeth A.
, Oegema, Renske
, Bielas, Stephanie L.
in
13/1
/ 13/100
/ 13/106
/ 13/51
/ 14
/ 14/19
/ 38
/ 38/23
/ 631/136/368/2430
/ 631/378/2571/1696
/ Alleles
/ Antibodies
/ Biochemistry
/ Biomedical and Life Sciences
/ Brain architecture
/ Brain research
/ Cell Biology
/ Cell Culture
/ Cell Differentiation - genetics
/ Central nervous system
/ Child
/ Child development
/ Child, Preschool
/ Complement system
/ Disease
/ Embryo cells
/ Female
/ Forebrain
/ Genetics
/ Genomics
/ Humans
/ Immune response
/ Immunology
/ Innate immunity
/ Intellectual disabilities
/ Intellectual Disability - genetics
/ Intellectual Disability - pathology
/ Lectins
/ Life Sciences
/ Male
/ Malformations of Cortical Development - genetics
/ Malformations of Cortical Development - pathology
/ Medicine
/ Membrane Proteins - genetics
/ Membrane Proteins - metabolism
/ Mental disorders
/ Microencephaly
/ Nervous system
/ Neurodevelopmental disorders
/ Neurodevelopmental Disorders - genetics
/ Organoids
/ Pediatrics
/ Polymicrogyria
/ Risk factors
/ Stem cells
/ Synaptogenesis
/ Tumor Suppressor Proteins
/ Zoology
2024
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Biallelic variants in CSMD1 are implicated in a neurodevelopmental disorder with intellectual disability and variable cortical malformations
Journal Article
Biallelic variants in CSMD1 are implicated in a neurodevelopmental disorder with intellectual disability and variable cortical malformations
2024
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Overview
CSMD1
(
Cub and Sushi Multiple Domains 1
) is a well-recognized regulator of the complement cascade, an important component of the innate immune response.
CSMD1
is highly expressed in the central nervous system (CNS) where emergent functions of the complement pathway modulate neural development and synaptic activity. While a genetic risk factor for neuropsychiatric disorders, the role of
CSMD1
in neurodevelopmental disorders is unclear. Through international variant sharing, we identified inherited biallelic
CSMD1
variants in eight individuals from six families of diverse ancestry who present with global developmental delay, intellectual disability, microcephaly, and polymicrogyria. We modeled
CSMD1
loss-of-function (LOF) pathogenesis in early-stage forebrain organoids differentiated from
CSMD1
knockout human embryonic stem cells (hESCs). We show that CSMD1 is necessary for neuroepithelial cytoarchitecture and synchronous differentiation. In summary, we identified a critical role for CSMD1 in brain development and biallelic
CSMD1
variants as the molecular basis of a previously undefined neurodevelopmental disorder.
Publisher
Nature Publishing Group UK,Springer Nature B.V,Nature Publishing Group
Subject
/ 13/100
/ 13/106
/ 13/51
/ 14
/ 14/19
/ 38
/ 38/23
/ Alleles
/ Biomedical and Life Sciences
/ Cell Differentiation - genetics
/ Child
/ Disease
/ Female
/ Genetics
/ Genomics
/ Humans
/ Intellectual Disability - genetics
/ Intellectual Disability - pathology
/ Lectins
/ Male
/ Malformations of Cortical Development - genetics
/ Malformations of Cortical Development - pathology
/ Medicine
/ Membrane Proteins - genetics
/ Membrane Proteins - metabolism
/ Neurodevelopmental disorders
/ Neurodevelopmental Disorders - genetics
/ Zoology
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