Literature DB >> 20435366

Two genetic variants of CD38 in subjects with autism spectrum disorder and controls.

Toshio Munesue1, Shigeru Yokoyama, Kazuhiko Nakamura, Ayyappan Anitha, Kazuo Yamada, Kenshi Hayashi, Tomoya Asaka, Hong-Xiang Liu, Duo Jin, Keita Koizumi, Mohammad Saharul Islam, Jian-Jun Huang, Wen-Jie Ma, Uh-Hyun Kim, Sun-Jun Kim, Keunwan Park, Dongsup Kim, Mitsuru Kikuchi, Yasuki Ono, Hideo Nakatani, Shiro Suda, Taishi Miyachi, Hirokazu Hirai, Alla Salmina, Yu A Pichugina, Andrei A Soumarokov, Nori Takei, Norio Mori, Masatsugu Tsujii, Toshiro Sugiyama, Kunimasa Yagi, Masakazu Yamagishi, Tsukasa Sasaki, Hidenori Yamasue, Nobumasa Kato, Ryota Hashimoto, Masako Taniike, Yutaka Hayashi, Junichiro Hamada, Shioto Suzuki, Akishi Ooi, Mami Noda, Yuko Kamiyama, Mizuho A Kido, Olga Lopatina, Minako Hashii, Sarwat Amina, Fabio Malavasi, Eric J Huang, Jiasheng Zhang, Nobuaki Shimizu, Takeo Yoshikawa, Akihiro Matsushima, Yoshio Minabe, Haruhiro Higashida.   

Abstract

The neurobiological basis of autism spectrum disorder (ASD) remains poorly understood. Given the role of CD38 in social recognition through oxytocin (OT) release, we hypothesized that CD38 may play a role in the etiology of ASD. Here, we first examined the immunohistochemical expression of CD38 in the hypothalamus of post-mortem brains of non-ASD subjects and found that CD38 was colocalized with OT in secretory neurons. In studies of the association between CD38 and autism, we analyzed 10 single nucleotide polymorphisms (SNPs) and mutations of CD38 by re-sequencing DNAs mainly from a case-control study in Japan, and Caucasian cases mainly recruited to the Autism Genetic Resource Exchange (AGRE). The SNPs of CD38, rs6449197 (p<0.040) and rs3796863 (p<0.005) showed significant associations with a subset of ASD (IQ>70; designated as high-functioning autism (HFA)) in the U.S. 104 AGRE family trios, but not with Japanese 188 HFA subjects. A mutation that caused tryptophan to replace arginine at amino acid residue 140 (R140W; (rs1800561, 4693C>T)) was found in 0.6-4.6% of the Japanese population and was associated with ASD in the smaller case-control study. The SNP was clustered in pedigrees in which the fathers and brothers of T-allele-carrier probands had ASD or ASD traits. In this cohort OT plasma levels were lower in subjects with the T allele than in those without. One proband with the T allele who was taking nasal OT spray showed relief of symptoms. The two variant CD38 poloymorphysms tested may be of interest with regard of the pathophysiology of ASD.

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Year:  2010        PMID: 20435366     DOI: 10.1016/j.neures.2010.03.004

Source DB:  PubMed          Journal:  Neurosci Res        ISSN: 0168-0102            Impact factor:   3.304


  76 in total

1.  Examining autism spectrum disorders by biomarkers: example from the oxytocin and serotonin systems.

Authors:  Elizabeth Hammock; Jeremy Veenstra-VanderWeele; Zhongyu Yan; Travis M Kerr; Marianna Morris; George M Anderson; C Sue Carter; Edwin H Cook; Suma Jacob
Journal:  J Am Acad Child Adolesc Psychiatry       Date:  2012-05-26       Impact factor: 8.829

2.  Effects of a common variant in the CD38 gene on social processing in an oxytocin challenge study: possible links to autism.

Authors:  Carina Sauer; Christian Montag; Christiane Wörner; Peter Kirsch; Martin Reuter
Journal:  Neuropsychopharmacology       Date:  2012-01-25       Impact factor: 7.853

3.  Are genetic variations in OXTR, AVPR1A, and CD38 genes important to social integration? Results from two large U.S. cohorts.

Authors:  Shun-Chiao Chang; M Maria Glymour; Marissa Rewak; Marilyn C Cornelis; Stefan Walter; Karestan C Koenen; Ichiro Kawachi; Liming Liang; Eric J Tchetgen Tchetgen; Laura D Kubzansky
Journal:  Psychoneuroendocrinology       Date:  2013-10-01       Impact factor: 4.905

4.  Towards Identifying Genetic Biomarkers for Gastrointestinal Dysfunction in Autism.

Authors:  A E Shindler; E L Hill-Yardin; S Petrovski; N Bishop; A E Franks
Journal:  J Autism Dev Disord       Date:  2020-01

Review 5.  Oxytocin Modulation of Neural Circuits.

Authors:  Mariela Mitre; Jessica Minder; Egzona X Morina; Moses V Chao; Robert C Froemke
Journal:  Curr Top Behav Neurosci       Date:  2018

6.  Parental oxytocin and early caregiving jointly shape children's oxytocin response and social reciprocity.

Authors:  Ruth Feldman; Ilanit Gordon; Moran Influs; Tamar Gutbir; Richard P Ebstein
Journal:  Neuropsychopharmacology       Date:  2013-01-16       Impact factor: 7.853

7.  Common EIF4E variants modulate risk for autism spectrum disorders in the high-functioning range.

Authors:  Regina Waltes; Johannes Gfesser; Denise Haslinger; Katja Schneider-Momm; Monica Biscaldi; Anette Voran; Christine M Freitag; Andreas G Chiocchetti
Journal:  J Neural Transm (Vienna)       Date:  2014-05-13       Impact factor: 3.575

Review 8.  Research review: Social motivation and oxytocin in autism--implications for joint attention development and intervention.

Authors:  Katherine K M Stavropoulos; Leslie J Carver
Journal:  J Child Psychol Psychiatry       Date:  2013-03-02       Impact factor: 8.982

9.  Interaction of CD38 Variant and Chronic Interpersonal Stress Prospectively Predicts Social Anxiety and Depression Symptoms Over Six Years.

Authors:  Benjamin A Tabak; Suzanne Vrshek-Schallhorn; Richard E Zinbarg; Jason M Prenoveau; Susan Mineka; Eva E Redei; Emma K Adam; Michelle G Craske
Journal:  Clin Psychol Sci       Date:  2015-05-13

Review 10.  Oxytocin and vasopressin systems in genetic syndromes and neurodevelopmental disorders.

Authors:  S M Francis; A Sagar; T Levin-Decanini; W Liu; C S Carter; S Jacob
Journal:  Brain Res       Date:  2014-01-22       Impact factor: 3.252

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