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首页> 外文期刊>Journal of Neuroscience Research >Classical 18.5-and 21.5-kDa isoforms of myelin basic protein inhibit calcium influx into oligodendroglial cells, in contrast to golli isoforms.
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Classical 18.5-and 21.5-kDa isoforms of myelin basic protein inhibit calcium influx into oligodendroglial cells, in contrast to golli isoforms.

机译:与golli同工型相反,髓鞘碱性蛋白的经典18.5和21.5 kDa同工型抑制钙流入少突胶质细胞。

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The myelin basic protein (MBP) family arises from different transcription start sites of the golli (gene of oligodendrocyte lineage) complex, with further variety generated by differential splicing. The "classical" MBP isoforms are peripheral membrane proteins that facilitate compaction of the mature myelin sheath but also have multiple protein interactions. The early developmental golli isoforms have previously been shown to promote process extension and enhance Ca(2+) influx into primary and immortalized oligodendrocyte cell lines. Here, we have performed similar studies with the classical 18.5- and 21.5-kDa isoforms of MBP. In contrast to golli proteins, overexpression of classical MBP isoforms significantly reduces Ca(2+) influx in the oligodendrocyte cell line N19 as well as in primary cultures of oligodendroglial progenitor cells. Pharmacological experiments demonstrate that this effect is mediated by voltage-operated Ca(2+) channels (VOCCs) and not by ligand-gated Ca(2+) channels or Ca(2+) release from intracellular stores. The pseudo-deiminated 18.5-kDa and the full-length 21.5-kDa isoforms do not reduce Ca(2+) influx as much as the unmodified 18.5-kDa isoform. However, more efficient membrane localization (of overexpressed, pseudo-deiminated 18.5-kDa and 21.5-kDa isoforms of classical MBP containing the 21-nt 3'-untranslated region transit signal) further reduces the Ca(2+) response after plasma membrane depolarization, suggesting that binding of classical MBP isoforms to the plasma membrane is important for modulation of Ca(2+) homeostasis. Furthermore, we have found that the mature 18.5-kDa isoform expressed in oligodendrocytes colocalizes with VOCCs, particularly at the leading edge of extending membrane processes. In summary, our findings suggest a key role for classical MBP proteins in regulating voltage-gated Ca(2+) channels at the plasma membrane of oligodendroglial cells and thus also in regulation of multiple developmental stages in this cell lineage.
机译:髓磷脂碱性蛋白(MBP)家族起源于golli(少突胶质细胞谱系的基因)复合体的不同转录起始位点,并通过差异剪接产生了更多的变异。 “经典的” MBP同工型是外围膜蛋白,其有助于成熟髓鞘的紧实,但也具有多种蛋白相互作用。先前已显示早期发育的胶质同工型,可促进过程扩展并增强Ca(2+)流入初级和永生的少突胶质细胞系。在这里,我们对MBP的经典18.5-kDa和21.5-kDa亚型进行了类似的研究。与golli蛋白相反,经典MBP亚型的过表达显着减少了少突胶质细胞N19细胞系以及少突胶质祖细胞原代培养物中Ca(2+)的流入。药理实验表明,这种作用是由电压操作的Ca(2+)通道(VOCCs)介导的,而不是由配体门控的Ca(2+)通道或Ca(2+)从细胞内的存储释放。伪决定的18.5 kDa和全长21.5 kDa的同工型没有减少Ca(2+)流入量不如未修饰的18.5 kDa的同工型。但是,更有效的膜定位(过度表达,伪决定的包含21-nt 3'-非翻译区转移信号的经典MBP的18.5-kDa和21.5-kDa的亚型)进一步降低了质膜去极化后的Ca(2+)响应。 ,表明经典的MBP亚型与质膜的结合对于调节Ca(2+)稳态很重要。此外,我们发现在少突胶质细胞中表达的成熟的18.5-kDa同工型与VOCC共定位,特别是在膜延伸过程的前沿。总而言之,我们的发现表明经典MBP蛋白在调节少突胶质细胞质膜上的电压门控Ca(2+)通道并因此在该细胞谱系的多个发育阶段的调节中起着关键作用。

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