首页> 外文OA文献 >Microfibril-associated glycoprotein-1 (MAGP-1) is specifically located on the beads of the beaded-filament structure for fibrillin-containing microfibrils as visualized by the rotary shadowing technique
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Microfibril-associated glycoprotein-1 (MAGP-1) is specifically located on the beads of the beaded-filament structure for fibrillin-containing microfibrils as visualized by the rotary shadowing technique

机译:微纤丝相关糖蛋白-1(maGp-1)特异性地位于珠状细丝结构的珠子上,用于含有原纤维蛋白的微纤维,通过旋转阴影技术可视化

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摘要

This study used immunoelectron microscopic techniques to define the ultrastructural location of MAGP-1 on the fibrillin-containing microfibrils of the ocular zonule. A specific anti-MAGP-1 monoclonal antibody (MAb), 11B, was produced that did not crossreact with fibrillin-1 or other microfibrillar proteins. MAb 11B was shown by immunofluorescence to localize intensely to zonular tissue. Postembedding immunoelectron microscopy showed that MAGP-1 was associated with microfibrils throughout the zonule, with the exception of a narrow band of microfibrils at the junction with the lens capsule. With preembedding labeling, the anti-MAGP-1 MAb was found to localize in a crossbanding pattern, at intervals of about 50 nm, to microfibrils throughout the zonule and along bundles of microfibrils in surrounding vitreous tissue. Rotary shadowing of isolated microfibrils showed a "beads on a string" morphology with a periodicity of about 50 nm. With immunogold labeling, the anti-MAGP-1 antibody specifically localized on the beads in a symmetrical manner. Occasionally two gold partides were attached to the same bead, suggesting that multiple MAGP-1 molecules were present in the structure. The results indicate that MAGP-1 is intimately and regularly associated with the bead regions of fibrillin-containing microfibrils. The findings are consistent with a major structural role for MAGP-1 in microfibril biology.
机译:这项研究使用免疫电子显微镜技术来定义MAGP-1在眼小带的含纤连蛋白的微纤维上的超微结构位置。产生了不与原纤维蛋白-1或其他微原纤维蛋白交叉反应的特异性抗MAGP-1单克隆抗体(MAb)11B。通过免疫荧光显示MAb 11B强烈定位于小带组织。包埋后免疫电子显微镜检查显示,MAGP-1与整个小带中的微纤维相关,但在与晶状体囊的交界处有较窄的微纤维带。通过预包埋标记,发现抗MAGP-1 MAb以交叉带模式定位,间隔约50 nm,遍及整个小带和周围玻璃体组织中的微纤维束。分离的微原纤维的旋转阴影显示“串珠”形态,其周期性为约50nm。通过免疫金标记,抗MAGP-1抗体以对称方式特异性定位在磁珠上。有时,两个金粒子附着在同一珠子上,表明该结构中存在多个MAGP-1分子。结果表明,MAGP-1与含纤连蛋白的微原纤维的微珠区域紧密且规则地相关。这些发现与MAGP-1在微原纤维生物学中的主要结构作用相一致。

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