Literature DB >> 18270976

Genetic analyses of roundabout (ROBO) axon guidance receptors in autism.

A Anitha1, Kazuhiko Nakamura, Kazuo Yamada, Shiro Suda, Ismail Thanseem, Masatsugu Tsujii, Yoshimi Iwayama, Eiji Hattori, Tomoko Toyota, Taishi Miyachi, Yasuhide Iwata, Katsuaki Suzuki, Hideo Matsuzaki, Masayoshi Kawai, Yoshimoto Sekine, Kenji Tsuchiya, Gen-Ichi Sugihara, Yasuomi Ouchi, Toshiro Sugiyama, Keita Koizumi, Haruhiro Higashida, Nori Takei, Takeo Yoshikawa, Norio Mori.   

Abstract

Autism is a pervasive developmental disorder diagnosed in early childhood. Abnormalities of serotonergic neurotransmission have been reported in autism. Serotonin transporter (SERT) modulates serotonin levels, and is a major therapeutic target in autism. Factors that regulate SERT expression might be implicated in the pathophysiology of autism. One candidate SERT regulatory protein is the roundabout axon guidance molecule, ROBO. SerT expression in Drosophila is regulated by robo; it plays a vital role in mammalian neurodevelopment also. Here, we examined the associations of ROBO3 and ROBO4 with autism, in a trio association study using DNA from 252 families recruited to AGRE. Four SNPs of ROBO3 (rs3923890, P = 0.023; rs7925879, P = 0.017; rs4606490, P = 0.033; and rs3802905, P = 0.049) and a single SNP of ROBO4 (rs6590109, P = 0.009) showed associations with autism; the A/A genotype of rs3923890 showed lower ADI-R_A scores, which reflect social interaction. Significant haplotype associations were also observed for ROBO3 and ROBO4. We further compared the mRNA expressions of ROBO1, ROBO2, ROBO3, and ROBO4 in the lymphocytes of 19 drug-naïve autistic patients and 20 age- and sex-matched controls. Expressions of ROBO1 (P = 0.018) and ROBO2 (P = 0.023) were significantly reduced in the autistic group; the possibility of using the altered expressions of ROBO as peripheral markers for autism, may be explored. In conclusion, we suggest a possible role of ROBO in the pathogenesis of autism. Abnormalities of ROBO may lead to autism either by interfering with serotonergic system, or by disrupting neurodevelopment. To the best of our knowledge, this is the first report relating ROBO with autism.

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Year:  2008        PMID: 18270976     DOI: 10.1002/ajmg.b.30697

Source DB:  PubMed          Journal:  Am J Med Genet B Neuropsychiatr Genet        ISSN: 1552-4841            Impact factor:   3.568


  38 in total

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Authors:  S Hossein Fatemi; Timothy D Folsom; Robert J Rooney; Susumu Mori; Tess E Kornfield; Teri J Reutiman; Rachel E Kneeland; Stephanie B Liesch; Kegang Hua; John Hsu; Divyen H Patel
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5.  Identification of ROBO1/2 and SCEL as candidate genes in Kallmann syndrome with emerging bioinformatic analysis.

Authors:  Zuobin Zhu; Xiaoxiao Han; Ying Li; Conghui Han; Mengqiong Deng; Yuhao Zhang; Qing Shen; Yijuan Cao; Zhenbei Li; Xitao Wang; Juan Gu; Xiaoyan Liu; Yaru Yang; Qiang Zhang; Fangfang Hu
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6.  Peptide sharing between influenza A H1N1 hemagglutinin and human axon guidance proteins.

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7.  White matter alterations in adult with autism spectrum disorder evaluated using diffusion kurtosis imaging.

Authors:  Aki Hattori; Koji Kamagata; Eiji Kirino; Christina Andica; Shoji Tanaka; Akifumi Hagiwara; Shohei Fujita; Tomoko Maekawa; Ryusuke Irie; Kanako K Kumamaru; Michimasa Suzuki; Akihiko Wada; Masaaki Hori; Shigeki Aoki
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Review 8.  Psychiatric behaviors associated with cytoskeletal defects in radial neuronal migration.

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9.  Functional annotation of genes overlapping copy number variants in autistic patients: focus on axon pathfinding.

Authors:  Silvia Sbacchi; Francesco Acquadro; Ignazio Calò; Francesco Calì; Valentino Romano
Journal:  Curr Genomics       Date:  2010-04       Impact factor: 2.236

10.  The role of Robo3 in the development of cortical interneurons.

Authors:  Melissa Barber; Thomas Di Meglio; William D Andrews; Luis R Hernández-Miranda; Fujio Murakami; Alain Chédotal; John G Parnavelas
Journal:  Cereb Cortex       Date:  2009-04-14       Impact factor: 5.357

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