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Molecular evolution of myelin basic protein, an abundant structural myelin component

机译:髓磷脂碱性蛋白的分子进化,髓磷脂碱性蛋白是一种丰富的结构性髓磷脂成分

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摘要

Rapid nerve conduction in jawed vertebrates is facilitated by the myelination of axons, which evolved in ancient cartilaginous fish. We aim to understand the coevolution of myelin and the major myelin proteins. We found that myelin basic protein (MBP) derived from living cartilaginous fish (sharks and rays) associated with the plasma membrane of glial cells similar to the phosphatidylinositol (4,5)-bisphosphate (PIP_2)-binding marker PH-PLCδ1, and that ionomycin-induced PIP_2-hydrolysis led to its cellular redistribution. We identified two paralogous mbp genes in multiple teleost species, consistent with a genome duplication at the root of the teleost clade. Zebrafish mbpb is organized in a complex transcription unit together with the unrelated gene-of-the-oligodendrocyte-lineage (golli) while mbpa does not encode GOLLI. Moreover, the embryonic expression of mbpa and mbpb differed, indicating functional specialization after duplication. However, both mbpa and mbpb-mRNAs were detected in mature oligodendrocytes and Schwann cells, MBPa and MBPb were mass spectrometrically identified in zebrafish myelin, both associated with the plasma membrane via PIP_2, and the ratio of nonsynonymous to synonymous nucleotide-substitution rates (K_a/K_s) was low. Together, this indicates selective pressure to conserve many aspects of the cellular expression and function of MBP across vertebrate species. We propose that the PIP_2-binding function of MBP is evolutionarily old and that its emergence in ancient gnathostomata provided glial cells with the competence to myelinate.
机译:颌骨脊椎动物的快速神经传导通过轴突的髓鞘形成而得以促进,轴突在古代软骨鱼类中进化。我们旨在了解髓磷脂和主要髓磷脂蛋白的共同进化。我们发现,髓鞘碱性蛋白(MBP)来自与软骨细胞质膜相关的活软骨鱼(鲨鱼和rays鱼),与磷脂酰肌醇(4,5)-双磷酸(PIP_2)结合标记PH-PLCδ1类似,并且离子霉素诱导的PIP_2水解导致其细胞重新分布。我们在多个硬骨鱼种中鉴定了两个旁系的mbp基因,这与硬骨鱼进化枝根部的基因组重复一致。斑马鱼mbpb与无关的少突胶质细胞谱系(golli)一起组织在一个复杂的转录单元中,而mbpa不编码GOLLI。此外,mbpa和mbpb的胚胎表达有所不同,表明复制后功能特化。然而,在成熟的少突胶质细胞和雪旺氏细胞中均检测到mbpa和mbpb-mRNA,在斑马鱼髓磷脂中通过质谱法鉴定了MBPa和MBPb,两者均通过PIP_2与质膜相关,并且非同义与同义核苷酸取代率之比(K_a / K_s)低。在一起,这表明在整个脊椎动物物种中保存MBP的细胞表达和功能的许多方面的选择性压力。我们认为,MBP的PIP_2结合功能在进化上已经过时,并且它在古老的食管气孔中的出现为神经胶质细胞提供了髓鞘形成的能力。

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