Epilepsy-induced changes in signaling systems of human and rat postsynaptic densities
Wyneken U, Marengo JJ, Villanueva S, et al. Epilepsy-induced changes in signaling systems of human and rat postsynaptic densities. Epilepsia, 2003, 44: 243-246.
Isolation and characterization of postsynaptic densities from various brain regions: Enrichment of different types of postsynaptic densities
Carlin RK, Grab DJ, Cohen RS, et al. Isolation and characterization of postsynaptic densities from various brain regions: enrichment of different types of postsynaptic densities. J Cell Biol, 1980, 86: 831-845.
Kindling and status epilepticus models of epilepsy: Rewiring the brain
DOI 10.1016/j.pneurobio.2004.03.009, PII S0301008204000449
Morimoto K, Fahnestock M, Racine RJ. Kindling and status epilepticus models of epilepsy: rewiring the brain. Prog Neurobiol, 2004, 73: 1-60. (Pubitemid 38749090)
Identification and verification of novel rodent postsynaptic density proteins
Jordan BA, Fernholz BD, Boussac M, et al. Identification and verification of novel rodent postsynaptic density proteins. Mol Cell proteomics, 2004, 3: 857-871.
Aberrant expression of cytoskeleton proteins in hippocampus from patients with mesial temporal lobe epilepsy
Yang JW, Gech T, Felizardo M. Aberrant expression of cytoskeleton proteins in hippocampus from patients with mesial temporal lobe epilepsy. Amino Acids, 2006, 30: 477-193.
SNX3 regulates endosomal function through its PX-domain mediated interaction with PtdIns (3) p
Xu Y, Nortsman H, Sreet L, et al. SNX3 regulates endosomal function through its PX-domain mediated interaction with PtdIns (3) p. Nature Cell Biol, 2001, 3: 658-667.
The neuroprotective effects of heat shock protein 27 overexpression in transgenic animals against kainite-induced seizures and hippocampal cell death
Mohammed T, Anna MC, Ke L, et al. The neuroprotective effects of heat shock protein 27 overexpression in transgenic animals against kainite-induced seizures and hippocampal cell death. J Biol Chem, 2003, 278: 19956-19965.
The zyxin-related protein TRIP6 interacts with PDZ motifs in the adaptor protein RIL and the protein tyrosine phosphatase PTP-BL
Cuppen E, Ham M, Wansink DG, et al. The zyxin-related protein TRIP6 interacts with PDZ motifs in the adaptor protein RIL and the protein tyrosine phosphatase PTP-BL. Euro J of Cell Biol, 2000, 79: 283-293.