14-3-3ε is important for neuronal migration by binding to NUDEL:: a molecular explanation for Miller-Dieker syndrome

被引:318
作者
Toyo-oka, K
Shionoya, A
Gambello, MJ
Cardoso, C
Leventer, R
Ward, HL
Ayala, R
Tsai, LH
Dobyns, W
Ledbetter, D
Hirotsune, S
Wynshaw-Boris, A
机构
[1] Univ Calif San Diego, Sch Med, Dept Pediat, Ctr Canc, La Jolla, CA 92093 USA
[2] Univ Calif San Diego, Sch Med, Dept Med, Ctr Canc, La Jolla, CA 92093 USA
[3] Japan Sci & Technol Corp, Ctr Genome Med Sci, Saitama Med Sch, PRESTO, Hidaka, Saitama 3501241, Japan
[4] Univ Chicago, Dept Human Genet, Chicago, IL 60637 USA
[5] Harvard Univ, Sch Med, Dept Pathol, Howard Hughes Med Inst, Boston, MA 02115 USA
[6] Fac Med Timone, INSERM, U491, F-13385 Marseille 05, France
[7] Royal Childrens Hosp, Dept Neurol, Parkville, Vic 3052, Australia
[8] Royal Childrens Hosp, Murdoch Childrens Res Inst, Parkville, Vic 3052, Australia
关键词
D O I
10.1038/ng1169
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Heterozygous deletions of 17p13.3 result in the human neuronal migration disorders isolated lissencephaly sequence (ILS) and the more severe Miller Dieker syndrome (MDS). Mutations in PAFAH1B1 (the gene encoding LIS1) are responsible for ILS and contribute to MDS, but the genetic causes of the greater severity of MDS are unknown. Here, we show that the gene encoding 14-3-3epsilon (YWHAE), one of a family of ubiquitous phosphoserine/threonine binding proteins, is always deleted in individuals with MDS. Mice deficient in Ywhae have defects in brain development and neuronal migration, similar to defects observed in mice heterozygous with respect to Pafah1b1. Mice heterozygous with respect to both genes have more severe migration defects than single heterozygotes. 14-3-3epsilon binds to CDK5/p35-phosphorylated NUDEL and this binding maintains NUDEL phosphorylation. Similar to LIS1, deficiency of 14-3-3epsilon results in mislocalization of NUDEL and LIS1, consistent with reduction of cytoplasmic dynein function. These results establish a crucial role for 14-3-3epsilon in neuronal development by sustaining the effects of CDK5 phosphorylation and provide a molecular explanation for the differences in severity of human neuronal migration defects with 17p13.3 deletions.
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页码:274 / 285
页数:12
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