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공동연구논문 "Frontiers in Molecular Neuroscience" 게재

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댓글 0건 조회 1,374회 작성일 2017-05-31 23:49

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고려대 한기훈 교수님 연구팀, KAIST 김은준 교수님 연구팀과의 공동연구로 수행된 본 연구결과는 2017년 3월 22일 Frontiers in Molecular Neuroscience (IF: 5.154)에 online 게재되었습니다. 축하드립니다.



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Front Mol Neurosci. 2017 Mar 22;10:81. doi: 10.3389/fnmol.2017.00081. eCollection 2017.

Increased Excitatory Synaptic Transmission of Dentate Granule Neurons in Mice Lacking PSD-95-Interacting Adhesion Molecule Neph2/Kirrel3 during the Early Postnatal Period.

Roh JD1Choi SY2Cho YS3Choi TY4Park JS4Cutforth T5Chung W6Park H2Lee D2Kim MH1Lee Y7Mo S8Rhee JS9Kim H8Ko J10Choi SY4Bae YC3Shen K11Kim E12Han K7.

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Abstract

Copy number variants and point mutations of NEPH2 (also called KIRREL3) gene encoding an immunoglobulin (Ig) superfamily adhesion molecule have been linked to autism spectrum disorders, intellectual disability and neurocognitive delay associated with Jacobsen syndrome, but the physiological roles of Neph2 in the mammalian brain remain largely unknown. Neph2 is highly expressed in the dentate granule (DG) neurons of the hippocampus and is localized in both dendrites and axons. It was recently shown that Neph2 is required for the formation of mossy fiber filopodia, the axon terminal structure of DG neurons forming synapses with GABAergic neurons of CA3. In contrast, however, it is unknown whether Neph2 also has any roles in the postsynaptic compartments of DG neurons. We here report that, through its C-terminal PDZ domain-binding motif, Neph2 directly interacts with postsynaptic density (PSD)-95, an abundant excitatory postsynaptic scaffolding protein. Moreover, Neph2 protein is detected in the brain PSD fraction and interacts with PSD-95 in synaptosomal lysates. Functionally, loss of Neph2 in mice leads to age-specific defects in the synaptic connectivity of DG neurons. Specifically, Neph2-/- mice show significantly increased spontaneous excitatory synaptic events in DG neurons at postnatal week 2 when the endogenous Neph2 protein expression peaks, but show normal excitatory synaptic transmission at postnatal week 3. The evoked excitatory synaptic transmission and synaptic plasticity of medial perforant pathway (MPP)-DG synapses are also normal in Neph2-/- mice at postnatal week 3, further confirming the age-specific synaptic defects. Together, our results provide some evidence for the postsynaptic function of Neph2 in DG neurons during the early postnatal period, which might be implicated in neurodevelopmental and cognitive disorders caused by NEPH2 mutations.

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