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Interaction of voltage-gated sodium channels with the extracellular matrix molecules tenascin-C and tenascin-R

机译:电压门控钠通道与细胞外基质分子腱生蛋白C和腱生蛋白R的相互作用

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摘要

The type IIA rat brain sodium channel is composed of three subunits: a large pore-forming α subunit and two smaller auxiliary subunits, β1 and β2. The β subunits are single membrane-spanning glycoproteins with one Ig-like motif in their extracellular domains. The Ig motif of the β2 subunit has close structural similarity to one of the six Ig motifs in the extracellular domain of the cell adhesion molecule contactin (also called F3 or F11), which binds to the extracellular matrix molecules tenascin-C and tenascin-R. We investigated the binding of the purified sodium channel and the extracellular domain of the β2 subunit to tenascin-C and tenascin-R in vitro. Incubation of purified sodium channels on microtiter plates coated with tenascin-C revealed saturable and specific binding with an apparent Kd of ≈15 nM. Glutathione S-transferase-tagged fusion proteins containing various segments of tenascin-C and tenascin-R were purified, digested with thrombin to remove the epitope tag, immobilized on microtiter dishes, and tested for their ability to bind purified sodium channel or the epitope-tagged extracellular domain of β2 subunits. Both purified sodium channels and the extracellular domain of the β2 subunit bound specifically to fibronectin type III repeats 1–2, A, B, and 6–8 of tenascin-C and fibronectin type III repeats 1–2 and 6–8 of tenascin-R but not to the epidermal growth factor-like domain or the fibrinogen-like domain of these molecules. The binding of neuronal sodium channels to extracellular matrix molecules such as tenascin-C and tenascin-R may play a crucial role in localizing sodium channels in high density at axon initial segments and nodes of Ranvier or in regulating the activity of immobilized sodium channels in these locations.
机译:IIA型大鼠脑钠通道由三个亚基组成:一个大的成孔α亚基和两个较小的辅助亚基β1和β2。 β亚基是跨膜的糖蛋白,在其细胞外结构域中具有一个Ig样基序。 β2亚基的Ig基序与细胞粘附分子contactin(也称为F3或F11)的细胞外域中的六个Ig基序之一具有紧密的结构相似性,后者与细胞外基质分子tenascin-C和tenascin-R结合。我们在体外研究了纯化的钠通道和β2亚基的胞外域与腱糖蛋白-C和腱糖蛋白-R的结合。在涂有腱生蛋白-C的微量滴定板上孵育纯化的钠通道后,可饱和且特异性结合,表观Kd约为15 nM。纯化含有谷氨酰胺S-转移酶标记的谷胱甘肽S-转移酶的融合蛋白,用凝血酶消化以去除表位标签,固定在微量滴定皿上,并测试其结合纯化的钠通道或表位的能力。标记的β2亚基胞外域。纯化的钠通道和与纤连蛋白III型特异性结合的β2亚基的细胞外结构域都重复腱糖素C的1-2,A,B和6-8,而III型纤连蛋白重复了腱糖素-C的1-2和6-8。 R而不是这些分子的表皮生长因子样结构域或纤维蛋白原样结构域。神经元钠通道与细胞外基质分子(如腱糖蛋白-C和腱糖蛋白-R)的结合可能在将钠离子通道高密度定位于轴突起始节段和Ranvier的结节或调节这些通道中固定的钠离子通道的活性中起关键作用位置。

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