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N-CAM 功能障碍和成年发病常染色体显性遗传性脑白质营养不良患者脑中 PSA-NCAM 的异常堆积。

N-CAM dysfunction and unexpected accumulation of PSA-NCAM in brain of adult-onset autosomal-dominant leukodystrophy.

机构信息

Department of Medicine and Experimental Oncology, Section of Biochemistry, University of Turin, Turin, Italy.

出版信息

Brain Pathol. 2010 Mar;20(2):431-40. doi: 10.1111/j.1750-3639.2009.00313.x. Epub 2009 Jun 25.

Abstract

Previously, myelin from cerebral white matter (CWM) of two subjects of a family with orthochromatic adult-onset autosomal-dominant leukodystrophy (ADLD) was disclosed to exhibit defective large isoform of myelin-associated glycoprotein (L-MAG) and patchy distribution only in the elder subject. L-MAG and neural cell adhesion molecule (N-CAM) (N-CAM 180, 140, and 120) are structurally related and concur to myelin/axon interaction. In early developmental stages, in neurons and glia N-CAM is converted into polysialylated (PSA)-NCAM by two sialyltransferases sialyltransferase-X (STX) and polysialyltransferase-1 (PST). Notably, PSA-NCAM disrupts N-CAM adhesive properties and is nearly absent in the adult brain. Here, CWM extracts and myelin of the two subjects were searched for the expression pattern of the N-CAM isoforms and PSA-NCAM, and their CWM was evaluated for N-CAM, STX and PST gene copy number and gene expression as mRNA. Biochemically, we disclosed that in CWM extracts and myelin from both subjects, PSA-NCAM accumulates, N-CAM 180 considerably increases, N-CAM 140 is modestly modified and N-CAM 120 remarkably decreases; duplication of genes encoding N-CAM, STX and PST was not revealed, whereas PST mRNA was clearly increased. Immunohistochemically, in CWM of both subjects, we found an unusually diffuse accumulation of PSA-NCAM without inflammation markers. PSA-NCAM persistence, up-regulated PST mRNA and previously uncovered defective L-MAG may be early pathogenetic events in this ADLD form.

摘要

先前,我们揭示了一个家族中两位患有正染性成年发病常染色体显性脑白质营养不良(ADLD)患者的脑白质髓鞘中存在缺陷的大型髓鞘相关糖蛋白(L-MAG),仅在年长的患者中出现且呈斑片状分布。L-MAG 和神经细胞黏附分子(N-CAM)(N-CAM180、140 和 120)在结构上相关,并共同参与髓鞘/轴突相互作用。在早期发育阶段,神经元和神经胶质细胞中的 N-CAM 通过两种唾液酸转移酶(STX)和多唾液酸转移酶-1(PST)转化为多唾液酸化(PSA)-NCAM。值得注意的是,PSA-NCAM 破坏了 N-CAM 的黏附特性,在成年脑中几乎不存在。在这里,我们在两个患者的 CWM 提取物和髓鞘中寻找 N-CAM 异构体和 PSA-NCAM 的表达模式,并评估其 CWM 中的 N-CAM、STX 和 PST 基因拷贝数和基因表达作为 mRNA。生物化学上,我们发现,在两个患者的 CWM 提取物和髓鞘中,PSA-NCAM 积聚,N-CAM180 显著增加,N-CAM140 适度修饰,N-CAM120 明显减少;未发现编码 N-CAM、STX 和 PST 的基因重复,而 PST mRNA 明显增加。免疫组织化学染色显示,在两个患者的 CWM 中,我们发现 PSA-NCAM 异常弥漫性积聚,而无炎症标志物。PSA-NCAM 的持续存在、上调的 PST mRNA 和先前发现的缺陷性 L-MAG 可能是这种 ADLD 形式的早期发病事件。

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