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包含Snap的脉络膜缺损连续基因缺失会改变海马可塑性。

Coloboma contiguous gene deletion encompassing Snap alters hippocampal plasticity.

作者信息

Steffensen S C, Wilson M C, Henriksen S J

机构信息

Department of Neuropharmacology, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Synapse. 1996 Mar;22(3):281-9. doi: 10.1002/(SICI)1098-2396(199603)22:3<281::AID-SYN11>3.0.CO;2-2.

Abstract

Mice heterozygous for the semidominant mutation coloboma (Cm/+) display several distinct pathologies including head bobbing, ophthalmic deformation, and locomotor hyperactivity. The Cm/+ mutation comprises a contiguous gene defect which encompasses deletion of the gene Snap encoding the presynaptic nerve terminal protein SNAP-25 that is an integral component of the synaptic vesicle docking and fusion complex. Indeed, SNAP-25 is required for axonal growth and for the regulated release of neurotransmitters at the synaptic cleft. As an extension of our studies on the behavioral deficits exhibited by these mutants, including evaluation of the hyperkinesis and dopamine-related behavioral pharmacology that might be related to attention-deficit hyperactivity disorder in humans, we have studied spontaneous electroencephalographic and evoked potential recordings in the dentate gyrus of halothane-anesthetized Cm/+ and normal (+/+) littermates to evaluate potential physiological abnormalities of synaptic function in these mice. While sensory activation elicited by brief (10 sec) tail-pinch produced 1-2 min of theta rhythmic activity in +/+ mice, theta induction was markedly reduced in Cm/+ mice. There were no significant differences in dentate afferent-evoked population excitatory postsynaptic potential (pEPSP) slopes, pEPSP facilitation, or population spike (PS) amplitudes; however, paired-pulse inhibition of dentate PS amplitudes was significantly increased in Cm/+ mice. Furthermore, although brief high-frequency stimulation of the perforant path produced robust long-term potentiation (LTP) of synaptic responses in the dentate gyrus of +/+ mice, LTP was attenuated in Cm /+ mice. It has been previously demonstrated that dopamine (DA) neurotransmission is essential for induction of one type of hippocampal theta rhythm and also may modulate hippocampal LTP, suggesting that alterations in DA synaptic transmission may underlie the behavioral abnormalities, in particular the hyperactivity, associated with Cm/+ mutant mice.

摘要

半显性突变性脉络膜缺损(Cm/+)的杂合子小鼠表现出几种不同的病理特征,包括头部抖动、眼部畸形和运动亢进。Cm/+突变包含一个连续基因缺陷,其中包括编码突触前神经末梢蛋白SNAP-25的基因Snap的缺失,SNAP-25是突触小泡对接和融合复合体的一个组成部分。实际上,SNAP-25对于轴突生长以及突触间隙神经递质的调节性释放是必需的。作为我们对这些突变体所表现出的行为缺陷研究的延伸,包括对可能与人类注意力缺陷多动障碍相关的运动亢进和多巴胺相关行为药理学的评估,我们研究了在氟烷麻醉的Cm/+和正常(+/+)同窝小鼠的齿状回中自发脑电图和诱发电位记录,以评估这些小鼠突触功能的潜在生理异常。虽然在+/+小鼠中,短暂(10秒)的尾部夹捏引起的感觉激活产生了1 - 2分钟的θ节律活动,但在Cm/+小鼠中,θ诱导明显减少。齿状传入诱发的群体兴奋性突触后电位(pEPSP)斜率、pEPSP易化或群体峰电位(PS)幅度没有显著差异;然而,Cm/+小鼠中齿状PS幅度的配对脉冲抑制显著增加。此外,虽然对穿通路径的短暂高频刺激在+/+小鼠的齿状回中产生了强大的突触反应长期增强(LTP),但在Cm /+小鼠中LTP减弱。先前已经证明,多巴胺(DA)神经传递对于一种海马θ节律的诱导至关重要,并且也可能调节海马LTP,这表明DA突触传递的改变可能是与Cm/+突变小鼠相关的行为异常,特别是多动的基础。

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