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1
Structural basis of dynamic glycine receptor clustering by gephyrin.
EMBO J. 2004 Jul 7;23(13):2510-9. doi: 10.1038/sj.emboj.7600256. Epub 2004 Jun 17.
2
Biochemical characterization of the high affinity binding between the glycine receptor and gephyrin.
J Biol Chem. 2004 Apr 30;279(18):18733-41. doi: 10.1074/jbc.M311245200. Epub 2004 Feb 19.
3
Structural characterization of gephyrin by AFM and SAXS reveals a mixture of compact and extended states.
Acta Crystallogr D Biol Crystallogr. 2013 Oct;69(Pt 10):2050-60. doi: 10.1107/S0907444913018714. Epub 2013 Sep 20.
4
Deciphering the structural framework of glycine receptor anchoring by gephyrin.
EMBO J. 2006 Mar 22;25(6):1385-95. doi: 10.1038/sj.emboj.7601029. Epub 2006 Mar 2.
5
A gephyrin-related mechanism restraining glycine receptor anchoring at GABAergic synapses.
J Neurosci. 2004 Feb 11;24(6):1398-405. doi: 10.1523/JNEUROSCI.4260-03.2004.
6
Modulation of gephyrin-glycine receptor affinity by multivalency.
ACS Chem Biol. 2014 Nov 21;9(11):2554-62. doi: 10.1021/cb500303a. Epub 2014 Sep 10.
8
Regulation of gephyrin assembly and glycine receptor synaptic stability.
J Biol Chem. 2006 Oct 6;281(40):30046-56. doi: 10.1074/jbc.M602155200. Epub 2006 Aug 1.
9
Sequences Flanking the Gephyrin-Binding Site of GlyRβ Tune Receptor Stabilization at Synapses.
eNeuro. 2018 Feb 19;5(1). doi: 10.1523/ENEURO.0042-17.2018. eCollection 2018 Jan-Feb.
10
X-ray crystal structure of the trimeric N-terminal domain of gephyrin.
J Biol Chem. 2001 Jul 6;276(27):25294-301. doi: 10.1074/jbc.M101923200. Epub 2001 Apr 26.

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1
Gephyrin filaments represent the molecular basis of inhibitory postsynaptic densities.
Nat Commun. 2025 Sep 16;16(1):8293. doi: 10.1038/s41467-025-63748-w.
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Phosphoinositide- and Collybistin-Dependent Synaptic Clustering of Gephyrin.
J Neurochem. 2025 Aug;169(8):e70169. doi: 10.1111/jnc.70169.
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Milestone Review: Unlocking the Proteomics of Glycine Receptor Complexes.
J Neurochem. 2025 Apr;169(4):e70061. doi: 10.1111/jnc.70061.
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The emerging role of glycine receptor α2 subunit defects in neurodevelopmental disorders.
Front Mol Neurosci. 2025 Feb 11;18:1550863. doi: 10.3389/fnmol.2025.1550863. eCollection 2025.
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Evolutionary plasticity and functional repurposing of the essential metabolic enzyme MoeA.
Commun Biol. 2025 Jan 14;8(1):49. doi: 10.1038/s42003-025-07476-3.
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Evolutionary plasticity and functional repurposing of the essential metabolic enzyme MoeA.
bioRxiv. 2024 Jul 23:2024.07.23.604723. doi: 10.1101/2024.07.23.604723.
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Structural and functional reorganization of inhibitory synapses by activity-dependent cleavage of neuroligin-2.
Proc Natl Acad Sci U S A. 2024 Apr 30;121(18):e2314541121. doi: 10.1073/pnas.2314541121. Epub 2024 Apr 24.
8
Inhibitory postsynaptic density from the lens of phase separation.
Oxf Open Neurosci. 2022 May 4;1:kvac003. doi: 10.1093/oons/kvac003. eCollection 2022.
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Thermodynamic modulation of gephyrin condensation by inhibitory synapse components.
Proc Natl Acad Sci U S A. 2024 Mar 19;121(12):e2313236121. doi: 10.1073/pnas.2313236121. Epub 2024 Mar 11.

本文引用的文献

1
Biochemical characterization of the high affinity binding between the glycine receptor and gephyrin.
J Biol Chem. 2004 Apr 30;279(18):18733-41. doi: 10.1074/jbc.M311245200. Epub 2004 Feb 19.
2
A gephyrin-related mechanism restraining glycine receptor anchoring at GABAergic synapses.
J Neurosci. 2004 Feb 11;24(6):1398-405. doi: 10.1523/JNEUROSCI.4260-03.2004.
3
Intracellular association of glycine receptor with gephyrin increases its plasma membrane accumulation rate.
J Neurosci. 2004 Feb 4;24(5):1119-28. doi: 10.1523/JNEUROSCI.4380-03.2004.
4
Diffusion dynamics of glycine receptors revealed by single-quantum dot tracking.
Science. 2003 Oct 17;302(5644):442-5. doi: 10.1126/science.1088525.
7
Structural characterisation and functional significance of transient protein-protein interactions.
J Mol Biol. 2003 Jan 31;325(5):991-1018. doi: 10.1016/s0022-2836(02)01281-0.
8
Gephyrin interacts with Dynein light chains 1 and 2, components of motor protein complexes.
J Neurosci. 2002 Jul 1;22(13):5393-402. doi: 10.1523/JNEUROSCI.22-13-05393.2002.
10

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