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Loss of Myelin Basic Protein Function Triggers Myelin Breakdown in Models of Demyelinating Diseases

机译:髓鞘缺失碱性蛋白质功能触发了脱髓鞘疾病模型的髓鞘细分

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Breakdown of myelin sheaths is a pathological hallmark of several autoimmune diseases of the nervous system. We employed autoantibody-mediated animal models of demyelinating diseases, including a rat model of neuromyelitis optica (NMO), to target myelin and found that myelin lamellae are broken down into vesicular structures at the innermost region of the myelin sheath. We demonstrated that myelin basic proteins (MBP), which form a polymer in between the myelin membrane layers, are targeted in these models. Elevation of intracellular Ca2+ levels resulted in MBP network disassembly and myelin vesiculation. We propose that the aberrant phase transition of MBP molecules from their cohesive to soluble and non-adhesive state is a mechanism triggering myelin breakdown in NMO and possibly in other demyelinating diseases.
机译:髓鞘的分解是神经系统的几种自身免疫疾病的病态标志。 我们使用自身抗体介导的脱髓鞘疾病的动物模型,包括神经肌炎Optica(NMO)的大鼠模型,以靶向髓鞘,发现髓鞘薄片被分解为髓鞘中最内部区域的凹凸结构。 我们证明,髓鞘碱性蛋白质(MBP),其在髓蛋白膜层之间形成聚合物,在这些模型中靶向。 细胞内Ca2 +水平的升高导致MBP网络拆卸和髓鞘混蛋。 我们提出,MBP分子从其内聚和非粘合状态的异常相转变是触发NMO中髓鞘细分的机制,并且可能在其他脱髓鞘疾病中。

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