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PMID: 12244319 已发表 · ppublish 英语

Mutations in Rab3a alter circadian period and homeostatic response to sleep loss in the mouse.

Nature genetics ·第 32 卷 ·第 2 期 ·2002-11-04

Kapfhamer David, Valladares Otto, Sun Yi, Nolan Patrick M, Rux John J, Arnold Steven E, Veasey Sigrid C, Bućan Maja

摘要

Rab3a is the most abundant Rab (ras-associated binding) protein in the brain and has a regulatory role in synaptic vesicle trafficking. Mice with a targeted loss-of-function mutation in Rab3a have defects in Ca(2+)-dependent synaptic transmission: the number of vesicles released in response to an action potential is greater than in wildtype mice, resulting in greater synaptic depression and the abolishment of CA3 mossy-fiber long term potentiation. The effect of these changes on behavior is unknown. In a screen for mouse mutants with abnormal rest-activity and sleep patterns, we identified a semidominant mutation, called earlybird, that shortens the circadian period of locomotor activity. Sequence analysis of Rab3a identified a point mutation in the conserved amino acid (Asp77Gly) within the GTP-binding domain of this protein in earlybird mutants, resulting in significantly reduced levels of Rab3a protein. Phenotypic assessment of earlybird mice and a null allele of Rab3a revealed anomalies in circadian period and sleep homeostasis, providing evidence that Rab3a-mediated synaptic transmission is involved in these behaviors.

文献信息
期刊
Nature genetics
期刊简称
Nat Genet
发表日期
2002-11-04
收录日期
2002-09-30
更新日期
2015-11-19
语言
英语
国家/地区
United States
NLM ID
9216904
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