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Loss of beta 2-laminin alters calcium sensitivity and voltage-gated calcium channel maturation of neurotransmission at the neuromuscular junction

机译:β2-laminin的损失会改变钙离子敏感性和神经肌肉连接处神经传递的电压门控钙离子通道成熟

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beta 2-laminin is a key mediator in the differentiation and formation of the skeletal neuromuscular junction. Loss of beta 2-laminin results in significant structural and functional aberrations such as decreased number of active zones and reduced spontaneous release of transmitter. In vitro beta 2-laminin has been shown to bind directly to the pore forming subunit of P/Q-type voltage-gated calcium channels (VGCCs). Neurotransmission is initially mediated by N-type VGCCs, but by postnatal day 18 switches to P/Q-type VGCC dominance. The present study investigated the changes in neurotransmission during the switch from N- to P/Q-type VGCC-mediated transmitter release at beta 2-laminin-deficient junctions. Analysis of the relationship between quantal content and extracellular calcium concentrations demonstrated a decrease in the calcium sensitivity, but no change in calcium dependence at beta 2-laminin-deficient junctions. Electrophysiological studies on VGCC sub-types involved in transmitter release indicate N-type VGCCs remain the primary mediator of transmitter release at matured beta 2-laminin-deficient junctions. Immunohistochemical analyses displayed irregularly shaped and immature beta 2-laminin-deficient neuromuscular junctions when compared to matured wild-type junctions. beta 2-laminin-deficient junctions also maintained the presence of N-type VGCC clustering within the presynaptic membrane, which supported the functional findings of the present study. We conclude that beta 2-laminin is a key regulator in development of the NMJ, with its loss resulting in reduced transmitter release due to decreased calcium sensitivity stemming from a failure to switch from N- to P/Q-type VGCC-mediated synaptic transmission.
机译:β2-laminin是骨骼神经肌肉接头分化和形成的关键介体。 β2-laminin的损失会导致明显的结构和功能异常,例如活性区数量减少和递质的自发释放减少。体外β2-层粘连蛋白已显示直接结合到P / Q型电压门控钙通道(VGCC)的孔形成亚基。神经传递最初由N型VGCC介导,但在出生后第18天转为P / Q型VGCC优势。本研究调查了在β2-层粘连蛋白缺陷型连接处从N型转变为P / Q型VGCC介导的递质释放过程中神经传递的变化。定量含量与细胞外钙浓度之间关系的分析表明,钙敏感性降低,但在β2-laminin缺陷连接处钙依赖性没有变化。对涉及递质释放的VGCC亚型的电生理研究表明,N型VGCC在成熟的β2-laminin缺陷连接处仍是递质释放的主要介体。与成熟的野生型连接处相比,免疫组织化学分析显示不规则形状和不成熟的β2-laminin缺陷型神经肌肉连接处。 β2-laminin缺陷的连接还维持突触前膜内N型VGCC群集的存在,这支持了本研究的功能发现。我们得出的结论是,β2-laminin是NMJ发育中的关键调节因子,由于无法从N型转换为P / Q型VGCC介导的突触传递而导致钙敏感性降低,因此其损失导致递质释放减少。 。

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