Lugli Giovanni, Larson John, Martone Maryann E, Jones Ying, Smalheiser Neil R
University of Illinois at Chicago, UIC Psychiatric Institute, Chicago, Illinois, USA.
J Neurochem. 2005 Aug;94(4):896-905. doi: 10.1111/j.1471-4159.2005.03224.x.
We have hypothesized that small RNAs may participate in learning and memory mechanisms. Because dendritic spines are important in synaptic plasticity and learning, we asked whether dicer, the rate-limiting enzyme in the formation of small RNAs, is enriched within dendritic spines. In adult mouse brain, dicer and the RNA-induced silencing complex (RISC) component eIF2c were expressed in the somatodendritic compartment of principal neurons and some interneurons in many regions, and dicer was enriched in dendritic spines and postsynaptic densities (PSDs). A portion of dicer and eIF2c were associated with each other and with fragile X mental retardation protein (FMRP), as assessed by co-immunoprecipitation. Calpain I treatment of recombinant dicer or immunopurified brain dicer caused a marked increase in RNAse III activity. Purified PSDs did not exhibit RNAse III activity, but calpain caused release of dicer from PSDs in an enzymatically active form, together with eIF2c. NMDA stimulation of hippocampal slices, or calcium treatment of synaptoneurosomes, caused a 75 kDa dicer fragment to appear in a calpain-dependent manner. The findings support a model whereby acute neuronal stimulation at excitatory synapses increases intracellular calcium, which activates calpain, which liberates dicer and eIF2c bound to PSDs. This supports the hypothesis that dicer could be involved in synaptic plasticity.
我们推测小RNA可能参与学习和记忆机制。由于树突棘在突触可塑性和学习中很重要,我们研究了小RNA形成过程中的限速酶——Dicer是否在树突棘中富集。在成年小鼠大脑中,Dicer和RNA诱导沉默复合体(RISC)组分eIF2c在许多区域的主要神经元和一些中间神经元的体树突区表达,且Dicer在树突棘和突触后致密物(PSD)中富集。通过免疫共沉淀评估发现,一部分Dicer和eIF2c相互关联,并与脆性X智力低下蛋白(FMRP)相关。用钙蛋白酶I处理重组Dicer或免疫纯化的脑Dicer会导致核糖核酸酶III活性显著增加。纯化的PSD不表现出核糖核酸酶III活性,但钙蛋白酶会使Dicer以酶活性形式从PSD中释放出来,同时释放eIF2c。用NMDA刺激海马切片或用钙处理突触体,会以钙蛋白酶依赖的方式产生一个75 kDa的Dicer片段。这些发现支持了一种模型,即兴奋性突触处的急性神经元刺激会增加细胞内钙,从而激活钙蛋白酶,钙蛋白酶释放与PSD结合的Dicer和eIF2c。这支持了Dicer可能参与突触可塑性的假说。