Williams Aislinn J, Yee Patricia, Smith Mitchell C, Murphy Geoffrey G, Umemori Hisashi
Molecular and Behavioral Neuroscience Institute and Department of Psychiatry, University of Michigan, Ann Arbor, MI, United States.
Boston Children's Hospital and Harvard Medical School, Boston, MA, United States.
Behav Brain Res. 2016 Jul 1;307:11-7. doi: 10.1016/j.bbr.2016.03.047. Epub 2016 Mar 29.
Specific growth factors induce formation and differentiation of excitatory and inhibitory synapses, and are essential for brain development and function. Fibroblast growth factor 22 (FGF22) is important for specifying excitatory synapses during development, including in the hippocampus. Mice with a genetic deletion of FGF22 (FGF22KO) during development subsequently have fewer hippocampal excitatory synapses in adulthood. As a result, FGF22KO mice are resistant to epileptic seizure induction. In addition to playing a key role in learning, the hippocampus is known to mediate mood and anxiety. Here, we explored whether loss of FGF22 alters affective, anxiety or social cognitive behaviors in mice. We found that relative to control mice, FGF22KO mice display longer duration of floating and decreased latency to float in the forced swim test, increased immobility in the tail suspension test, and decreased preference for sucrose in the sucrose preference test, which are all suggestive of a depressive-like phenotype. No differences were observed between control and FGF22KO mice in other behavioral assays, including motor, anxiety, or social cognitive tests. These results suggest a novel role for FGF22 specifically in affective behaviors.
特定生长因子诱导兴奋性和抑制性突触的形成与分化,对大脑发育和功能至关重要。成纤维细胞生长因子22(FGF22)在发育过程中对确定兴奋性突触很重要,包括在海马体中。发育过程中基因缺失FGF22(FGF22KO)的小鼠成年后海马体兴奋性突触较少。因此,FGF22KO小鼠对癫痫发作诱导具有抗性。除了在学习中起关键作用外,海马体还已知介导情绪和焦虑。在此,我们探究了FGF22的缺失是否会改变小鼠的情感、焦虑或社会认知行为。我们发现,相对于对照小鼠,FGF22KO小鼠在强迫游泳试验中漂浮持续时间更长且漂浮潜伏期缩短,在悬尾试验中不动时间增加,在蔗糖偏好试验中对蔗糖的偏好降低,这些都提示有类似抑郁的表型。在包括运动、焦虑或社会认知测试在内的其他行为试验中,未观察到对照小鼠和FGF22KO小鼠之间存在差异。这些结果表明FGF22在情感行为中具有新的作用。