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通过轻敲模式原子力显微镜直接观察胶原结合蛋白聚糖

Direct visualization of collagen-bound proteoglycans by tapping-mode atomic force microscopy.

作者信息

Raspanti M, Alessandrini A, Ottani V, Ruggeri A

机构信息

Electron Microscopy Laboratory, Institute of Human Anatomy, Bologna, Italy.

出版信息

J Struct Biol. 1997 Jul;119(2):118-22. doi: 10.1006/jsbi.1997.3865.

Abstract

Most studies on the interaction of collagen with proteoglycans, two universal components of connective tissues, use technical approaches which substantially modify the shape and size of the proteoglycans themselves. In the present study unfixed, untreated collagen fibrils from rat tail tendon were dehydrated and observed by tapping-mode atomic force microscopy. The surface of collagen fibrils immediately reveals a periodic alternation of gap and overlap zones. A thin, transverse ridge decorates the gap zone, while other filamentous structures run on the fibril surface, either parallel or perpendicular to the fibril axis. These surface structures are much enhanced by Cupromeronic Blue preincubation, while pretreatment with chondroitinase ABC removes them completely, leaving barely detectable transverse ridges. The ridge and filaments are likely to represent, respectively, the core protein and the glycosaminoglycan side chains of proteoglycans, displayed with a far better resolution than with conventional histochemical or immunohistochemical techniques. Our data suggest that proteoglycan molecules are capable of different, multiple interactions with the collagen fibril surface as well as with each other.

摘要

大多数关于胶原蛋白与蛋白聚糖(结缔组织的两种普遍成分)相互作用的研究采用的技术方法会极大地改变蛋白聚糖本身的形状和大小。在本研究中,将来自大鼠尾腱的未固定、未处理的胶原纤维脱水,并用轻敲模式原子力显微镜进行观察。胶原纤维表面立即显示出间隙和重叠区域的周期性交替。一条细的横向脊装饰着间隙区域,而其他丝状结构在纤维表面上沿平行或垂直于纤维轴的方向排列。这些表面结构通过铜试剂蓝预孵育得到显著增强,而用软骨素酶ABC预处理则将它们完全去除,仅留下几乎检测不到的横向脊。这些脊和细丝可能分别代表蛋白聚糖的核心蛋白和糖胺聚糖侧链,其显示的分辨率远高于传统的组织化学或免疫组织化学技术。我们的数据表明,蛋白聚糖分子能够与胶原纤维表面以及彼此之间进行不同的、多种相互作用。

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