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Citations to this article

Autistic-like phenotypes in Cadps2-knockout mice and aberrant CADPS2 splicing in autistic patients
Tetsushi Sadakata, … , Takeo Yoshikawa, Teiichi Furuichi
Tetsushi Sadakata, … , Takeo Yoshikawa, Teiichi Furuichi
Published April 2, 2007
Citation Information: J Clin Invest. 2007;117(4):931-943. https://doi.org/10.1172/JCI29031.
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Research Article Article has an altmetric score of 9

Autistic-like phenotypes in Cadps2-knockout mice and aberrant CADPS2 splicing in autistic patients

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Abstract

Autism, characterized by profound impairment in social interactions and communicative skills, is the most common neurodevelopmental disorder, and its underlying molecular mechanisms remain unknown. Ca2+-dependent activator protein for secretion 2 (CADPS2; also known as CAPS2) mediates the exocytosis of dense-core vesicles, and the human CADPS2 is located within the autism susceptibility locus 1 on chromosome 7q. Here we show that Cadps2-knockout mice not only have impaired brain-derived neurotrophic factor release but also show autistic-like cellular and behavioral phenotypes. Moreover, we found an aberrant alternatively spliced CADPS2 mRNA that lacks exon 3 in some autistic patients. Exon 3 was shown to encode the dynactin 1–binding domain and affect axonal CADPS2 protein distribution. Our results suggest that a disturbance in CADPS2-mediated neurotrophin release contributes to autism susceptibility.

Authors

Tetsushi Sadakata, Miwa Washida, Yoshimi Iwayama, Satoshi Shoji, Yumi Sato, Takeshi Ohkura, Ritsuko Katoh-Semba, Mizuho Nakajima, Yukiko Sekine, Mika Tanaka, Kazuhiko Nakamura, Yasuhide Iwata, Kenji J. Tsuchiya, Norio Mori, Sevilla D. Detera-Wadleigh, Hironobu Ichikawa, Shigeyoshi Itohara, Takeo Yoshikawa, Teiichi Furuichi

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CAPS-1 promotes fusion competence of stationary dense-core vesicles in presynaptic terminals of mammalian neurons: ( A ) Example image of a hippocampal neuron (DIV 14) stained for endogenous CAPS-1 (green), dendrite marker MAP2 (blue) and synapse marker VGLUT1 (red). Scale bar 10 µm. ( B ) Zoom of a neurite stained for CAPS-1 and VGLUT1. CAPS-1 rich domains not overlapping with VGLUT1 (filled arrowhead), VGLUT1 punctum not enriched for CAPS-1 (open arrowhead), VGLUT1 puncta overlapping with a CAPS-1 rich domain (stars). Scale bar 2 µm. ( C ) Co-localization of CAPS-1 with VGLUT1 in the entire neuron quantified by Pearson's correlation. Co-localization of VAMP2 with VGLUT1 was used as a positive control (VGLUT1-VAMP2: 0.8±0.02, n=7 neurons; VGLUT1-CAPS-1: 0.4±0.05, n=7 neurons, ***p<0.0001). ( D ) Mander's coefficients for the proportion of CAPS-1 immuno-reactivity in VGLUT1 positive locations: 0.67±0.08, n=8 neurons or proportion of VGLUT1 immunoreactivity in CAPS-1 positive locations: 0.64±0.05, n=8 neurons. ( E ) Example images of neurites from hippocampal neurons (DIV 14) stained for endogenous CAPS-1 (green, left panel) and VGLUT1 (red) or for Munc13-1 (M13-1, green, right panel) and VGLUT1 (red). CAPS-1 domains not overlapping with VGLUT1 (filled arrowheads), VGLUT1 puncta not enriched for CAPS-1 (open arrowheads). Synapses (VGLUT1 puncta) overlapping with CAPS-1 rich domains (stars). Scale bar 5 µm. ( F ) CAPS-1 co-localization with VGLUT1 in the entire neuron is lower compared to co-localization of Munc13-1 and VGLUT1. Pearson's correlation M13-1-VGLUT1: 0.6±0.04, n=10; CAPS-1-VGLUT1: 0.4±0.08, n=12, *p<0.05. ( G ) Percentage of VGLUT1 labeled synapses expressing CAPS-1 is lower than VGLUT1 labeled synapses expressing (VGLUT1/CAPS-1: 58.5±10.9%, n=7 neurons, number of synapses = 239; VGLUT1/M13-1: 96.2±0.7%, n=4 neurons, number of synapses = 350). ( H ) Example images of neurites from hippocampal neurons (DIV 14) infected with lentivirus encoding NPY-Venus (green) and stained for chromogranin B (ChgB, red). Scale bar 2 µm. ( I ) Mander's coefficients for the proportion of endogenous ChrB immuno-reactivity in NPY-Venus puncta: 0.97±0.02, n=14 neurons or proportion of NPY-Venus immunoreactivity in ChrB puncta: 0.84±0.01, n=14 neurons. ( J ) Example images of neurites from hippocampal neurons (DIV 14) infected with lentivirus encoding NPY-Venus and stained for CAPS-1 (red) and MAP2 (blue). Scale bar 2 µm. ( K ) Quantification of co-localization of CAPS-1 and NPY-Venus in the entire neuron. Pearson's coefficient: 0.45±0.05; n=21 neurons. ( L ) Percentage of NPY-Venus labeled DCVs co-localizing with CAPS-1: 34.71±3.03%, n=6, number of DCVs = 414
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JL Silverman, M Yang, C Lord, JN Crawley
Nature Reviews Neuroscience 2010
Calcium-dependent activator protein for secretion 2 (CAPS2) promotes BDNF secretion and is critical for the development of GABAergic interneuron network
Y Shinoda, T Sadakata, K Nakao, R Katoh-Semba, E Kinameri, A Furuya, Y Yanagawa, H Hirase, T Furuichi
Proceedings of the National Academy of Sciences 2010
Functional annotation of genes overlapping copy number variants in autistic patients: focus on axon pathfinding
S Sbacchi, F Acquadro, I Calò, F Calì, V Romano
Current genomics 2010
Uncovering molecular biomarkers that correlate cognitive decline with the changes of hippocampus' gene expression profiles in Alzheimer's disease
MG Ravetti, OA Rosso, R Berretta, P Moscato
PloS one 2010
A Draft Sequence of the Neandertal Genome
RE Green, J Krause, AW Briggs, T Maricic, U Stenzel, M Kircher, N Patterson, H Li, W Zhai, MH Fritz, NF Hansen, EY Durand, AS Malaspinas, JD Jensen, T Marques-Bonet, C Alkan, K Prufer, M Meyer, HA Burbano, JM Good, R Schultz, A Aximu-Petri, A Butthof, B Hober, B Hoffner, M Siegemund, A Weihmann, C Nusbaum, ES Lander, C Russ, N Novod, J Affourtit, M Egholm, C Verna, P Rudan, D Brajkovic, Z Kucan, I Gusic, VB Doronichev, LV Golovanova, C Lalueza-Fox, M la Rasilla, J Fortea, A Rosas, RW Schmitz, PL Johnson, EE Eichler, D Falush, E Birney, JC Mullikin, M Slatkin, R Nielsen, J Kelso, M Lachmann, D Reich, S Paabo
Science 2010
Involvement of ceramide in ethanol-induced apoptotic neurodegeneration in the neonatal mouse brain
M Saito, G Chakraborty, M Hegde, J Ohsie, SM Paik, C Vadasz, M Saito
Journal of Neurochemistry 2010
Voxelwise genome-wide association study (vGWAS)
Stein JL, Hua X, Lee S, Ho AJ, Leow AD, Toga AW, Saykin AJ, Shen L, Foroud T, Pankratz N, Huentelman MJ, Craig DW, Gerber JD, Allen AN, Corneveaux JJ, DeChairo BM, Potkin SG, Weiner MW, Thompson PM
NeuroImage 2010
Comment on “Autistic-like phenotypes in Cadps2-knockout mice and aberrant CADPS2 splicing in autistic patients”
Alal Eran1,2*, Kaitlin R. Graham1*, Kayla Vatalaro1*, Jillian McCarthy1, Heather Peters1, Stephanie J. Brewster1, Ellen Hanson3, Rachel Hundley3, Leonard Rappaport3, Ingrid A Holm1,4, Isaac S. Kohane2,4,5, Louis M. Kunkel1,4,6
Journal of Clinical Investigation 2009
Common circuit defect of excitatory-inhibitory balance in mouse models of autism
N Gogolla, JJ Leblanc, KB Quast, TC Südhof, M Fagiolini, TK Hensch
Journal of Neurodevelopmental Disorders 2009
Modulation of dendritic spine development and plasticity by BDNF and vesicular trafficking: fundamental roles in neurodevelopmental disorders associated with mental retardation and autism
CA Chapleau, JL Larimore, A Theibert, L Pozzo-Miller
Journal of Neurodevelopmental Disorders 2009
The practice of child and adolescent psychiatry: a survey of early-career psychiatrists in Japan
M Tateno, N Uchida, S Kikuchi, R Kawada, S Kobayashi, W Nakano, R Sasaki, K Shibata, T Shirasaka, M Suzuki, K Uehara, T Saito
Child and adolescent psychiatry and mental health 2009
Genome-wide analyses of exonic copy number variants in a family-based study point to novel autism susceptibility genes
M Bucan, BS Abrahams, K Wang, JT Glessner, EI Herman, LI Sonnenblick, AI Retuerto, M Imielinski, D Hadley, JP Bradfield, C Kim, NB Gidaya, I Lindquist, T Hutman, M Sigman, V Kustanovich, CM Lajonchere, A Singleton, J Kim, TH Wassink, WM McMahon, T Owley, JA Sweeney, H Coon, JI Nurnberger, M Li, RM Cantor, NJ Minshew, JS Sutcliffe, EH Cook, G Dawson, JD Buxbaum, SF Grant, GD Schellenberg, DH Geschwind, H Hakonarson
PLoS genetics 2009
Developmentally Regulated Ca2+-Dependent Activator Protein for Secretion 2 (CAPS2) is Involved in BDNF Secretion and is Associated with Autism Susceptibility
T Sadakata, T Furuichi
The Cerebellum 2009
The Ca2+-dependent Activator Protein for Secretion CAPS: Do I Dock or do I Prime?
DR Stevens, J Rettig
Molecular Neurobiology 2009
A functional polymorphism of the brain derived neurotrophic factor gene and cortical anatomy in autism spectrum disorder
A Raznahan, R Toro, P Proitsi, J Powell, T Paus, PF Bolton, DG Murphy
Journal of Neurodevelopmental Disorders 2009
Genome-wide linkage in Utah autism pedigrees
K Allen-Brady, R Robison, D Cannon, T Varvil, M Villalobos, C Pingree, MF Leppert, J Miller, WM McMahon, H Coon
Molecular Psychiatry 2009
Response to the letter by Eran et al.
Furuichi T, Sadakata T
Journal of Clinical Investigation 2009
Identification of Arx transcriptional targets in the developing basal forebrain
CT Fulp, G Cho, ED Marsh, IM Nasrallah, PA Labosky, JA Golden
Human Molecular Genetics 2008
Advances in autism genetics: on the threshold of a new neurobiology
BS Abrahams, DH Geschwind
Nature reviews. Genetics 2008
Alternative splicing variations in mouse CAPS2: differential expression and functional properties of splicing variants
T Sadakata, M Washida, T Furuichi
BMC neuroscience 2007
Impaired Cerebellar Development and Function in Mice Lacking CAPS2, a Protein Involved in Neurotrophin Release
T Sadakata, W Kakegawa, A Mizoguchi, M Washida, R Katoh-Semba, F Shutoh, T Okamoto, H Nakashima, K Kimura, M Tanaka, Y Sekine, S Itohara, M Yuzaki, S Nagao, T Furuichi
The Journal of neuroscience : the official journal of the Society for Neuroscience 2007
UNC-31 (CAPS) Is Required for Dense-Core Vesicle But Not Synaptic Vesicle Exocytosis in Caenorhabditis elegans
S Speese, M Petrie, K Schuske, M Ailion, K Ann, K Iwasaki, EM Jorgensen, TF Martin
The Journal of neuroscience : the official journal of the Society for Neuroscience 2007

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