Regulation of CNS synapses by neuronal MHC class I

被引:234
作者
Goddard, C. Alex [1 ]
Butts, Daniel A. [1 ]
Shatz, Carla J. [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Neurobiol, Boston, MA 02115 USA
关键词
homeostatic; neuron; plasticity; synapsin; PSD-95;
D O I
10.1073/pnas.0702023104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Until recently, neurons in the healthy brain were considered immune-privileged because they did not appear to express MHC class I (MHCI). However, MHCl mRNA was found to be regulated by neural activity in the developing visual system and has been detected in other regions of the uninjured brain. Here we show that MHCI regulates aspects of synaptic function in response to activity. MHCl protein is colocalized postsynaptically with PSD-95 in dendrites of hippocampal neurons. In vitro, whole-cell recordings of hippocampal neurons from beta 2m/TAP1 knockout (KO) mice, which have reduced MHO surface levels, indicate a 40% increase in mini-EPSC(mEPSC) frequency. mEPSC frequency is also increased 100% in layer 4 cortical neurons. Similarly, in KO hippocampal cultures, there is a modest increase in the size of presynaptic boutons relative to WT, whereas postsynaptic parameters (PSD-95 puncta size and mEPSC amplitude) are normal. In EM of intact hippocampus, KO synapses show a corresponding increase in vesicles number. Finally, KO neurons in vitro fail to respond normally to TTX treatment by scaling up synaptic parameters. Together, these results suggest that postsynaptically localized MHCI acts in homeostatic regulation of synaptic function and morphology during development and in response to activity blockade. The results also imply that MHCI acts retrogradely across the synapse to translate activity into lasting change in structure.
引用
收藏
页码:6828 / 6833
页数:6
相关论文
共 55 条
[1]   Enhancement of spike-timing precision by autaptic transmission in neocortical inhibitory interneurons [J].
Bacci, A ;
Huguenard, JR .
NEURON, 2006, 49 (01) :119-130
[2]   Gene expression profiling of facilitated L-LTP in VP16-CREB mice reveals that BDNF is critical for the maintenance of LTP and its synaptic capture [J].
Barco, A ;
Patterson, S ;
Alarcon, JM ;
Gromova, P ;
Mata-Roig, M ;
Morozov, A ;
Kandell, ER .
NEURON, 2005, 48 (01) :123-137
[3]   Control of synaptic strength by glial TNFα [J].
Beattie, EC ;
Stellwagen, D ;
Morishita, W ;
Bresnahan, JC ;
Ha, BK ;
Von Zastrow, M ;
Beattie, MS ;
Malenka, RC .
SCIENCE, 2002, 295 (5563) :2282-2285
[4]   PUTTING TOGETHER AN MHC CLASS-I MOLECULE [J].
BIJLMAKERS, MJ ;
PLOEGH, HL .
CURRENT OPINION IN IMMUNOLOGY, 1993, 5 (01) :21-26
[5]   Immune signalling in neural development, synaptic plasticity and disease [J].
Boulanger, LM ;
Shatz, CJ .
NATURE REVIEWS NEUROSCIENCE, 2004, 5 (07) :521-531
[6]   Synaptic gain control and homeostasis [J].
Burrone, J ;
Murthy, VN .
CURRENT OPINION IN NEUROBIOLOGY, 2003, 13 (05) :560-567
[7]   Multiple forms of synaptic plasticity triggered by selective suppression of activity in individual neurons [J].
Burrone, J ;
O'Byrne, M ;
Murthy, VN .
NATURE, 2002, 420 (6914) :414-418
[8]   Blockade of endogenous ligands of trkB inhibits formation of ocular dominance columns [J].
Cabelli, RJ ;
Shelton, DL ;
Segal, RA ;
Shatz, CJ .
NEURON, 1997, 19 (01) :63-76
[9]   Regulation of class I MHC gene expression in the developing and mature CNS by neural activity [J].
Corriveau, RA ;
Huh, GS ;
Shatz, CJ .
NEURON, 1998, 21 (03) :505-520
[10]   Homeostatic scaling of vesicular glutamate and GABA transporter expression in rat neocortical circuits [J].
De Gois, S ;
Schäfer, MKH ;
Defamie, N ;
Chen, C ;
Ricci, A ;
Weihe, E ;
Varoqui, H ;
Erickson, JD .
JOURNAL OF NEUROSCIENCE, 2005, 25 (31) :7121-7133