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通过酶促去除硫酸软骨素以及缺乏腱生蛋白-R对细胞外基质进行修饰,会以不同方式影响海马体中几种形式的突触可塑性。

Modification of extracellular matrix by enzymatic removal of chondroitin sulfate and by lack of tenascin-R differentially affects several forms of synaptic plasticity in the hippocampus.

作者信息

Bukalo O, Schachner M, Dityatev A

机构信息

Zentrum für Molekulare Neurobiologie, Universität Hamburg, Martinistrasse 52, D-20246, Hamburg, Germany.

出版信息

Neuroscience. 2001;104(2):359-69. doi: 10.1016/s0306-4522(01)00082-3.

Abstract

The extracellular matrix is a complex network of macromolecules including glycoproteins, polysaccharides and proteoglycans. Tenascin-R and chondroitin sulfate proteoglycans are essential components of hippocampal extracellular matrix co-localised in perineuronal nets on interneurons. Mutant mice deficient in expression of tenascin-R showed a two-fold reduction of long-term potentiation induced by theta-burst stimulation of Schaffer collaterals in the stratum radiatum of the CA1 region of the hippocampus, as compared to wild-type mice. The same reduction in potentiation was observed in slices from wild-type mice pretreated for 2h with chondroitinase ABC that completely removed chondroitin sulfates from the extracellular matrix. Treatment of slices from tenascin-R deficient animals with the enzyme did not further reduce potentiation in comparison with untreated slices from these mice, showing an occlusion of effects produced by removal of tenascin-R and chondroitin sulfates. However, the level of potentiation recorded immediately after theta-burst stimulation was significantly higher in wild-type than in tenascin-R deficient mice, whereas chondroitinase ABC had no significant effect on this short-term form of plasticity. Enzymatic treatment also did not affect short-term depression evoked by low-frequency stimulation, whereas this form of synaptic plasticity was reduced in tenascin-R deficient mice. In contrast, long-term depression in CA1 was impaired by digestion of chondroitin sulfates but appeared normal in tenascin-R mutants. Our data demonstrate that tenascin-R and chondroitin sulfate proteoglycans differentially modulate several forms of synaptic plasticity, suggesting that different mechanisms are involved.

摘要

细胞外基质是一个由大分子组成的复杂网络,包括糖蛋白、多糖和蛋白聚糖。腱生蛋白-R和硫酸软骨素蛋白聚糖是海马细胞外基质的重要组成部分,它们共同定位于中间神经元的神经元周围网络中。与野生型小鼠相比,缺乏腱生蛋白-R表达的突变小鼠在海马CA1区辐射层中,由Schaffer侧支的θ波爆发刺激诱导的长时程增强降低了两倍。在用能够完全去除细胞外基质中硫酸软骨素的软骨素酶ABC预处理2小时的野生型小鼠切片中,也观察到了相同程度的增强降低。与未处理的腱生蛋白-R缺陷动物切片相比,用该酶处理这些动物的切片并没有进一步降低增强效果,这表明去除腱生蛋白-R和硫酸软骨素所产生的效果存在重叠。然而,在θ波爆发刺激后立即记录到的增强水平,野生型小鼠显著高于腱生蛋白-R缺陷小鼠,而软骨素酶ABC对这种短期可塑性形式没有显著影响。酶处理也不影响低频刺激诱发的短期抑制,而这种形式的突触可塑性在腱生蛋白-R缺陷小鼠中降低。相反,CA1区的长时程抑制在硫酸软骨素被消化后受损,但在腱生蛋白-R突变体中似乎正常。我们的数据表明,腱生蛋白-R和硫酸软骨素蛋白聚糖对几种形式的突触可塑性有不同的调节作用,这表明涉及不同的机制。

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