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分离的和原位的小鼠AA淀粉样纤维的高分辨率超微结构比较。

A high resolution ultrastructural comparison of isolated and in situ murine AA amyloid fibrils.

作者信息

Inoue S, Kuroiwa M, Tan R, Kisilevsky R

机构信息

Department of Anatomy and Cell Biology, McGill University, Montreal, Quebec, Canada.

出版信息

Amyloid. 1998 Jun;5(2):99-110. doi: 10.3109/13506129808995287.

Abstract

There is an inconsistency between the ultrastructural organization of AA amyloid fibrils that have been isolated, which are composed of a slowly twisting set of two or more protofibrils, and those seen in situ, which are tubular entities with a tight helical substructure. In this study, the ultrastructure of fibrils isolated from experimental murine AA amyloid were observed at high resolution and compared with those seen in situ in the hope of clarifying the reason for this inconsistency. The fibrils in situ were composed of a microfibril-like 8-9 nm wide core covered by a layer of heparan sulfate proteoglycan (HSPG) to which 1 nm wide filaments, immunohistochemically identified as AA protein, were externally associated. Following isolation with the standard distilled water washing procedure, the HSPG layer and AA protein filaments detached from their core and dispersed into the water. The remaining denuded, variously loosened cores lost their typical appearance. In distilled water the detached 1 nm wide AA protein filaments became quite conspicuous and coiled themselves into 3 nm wide tight helices which in turn assembled into the characteristic slowly twisting sets of two parallel protofibrils similar to that previously reported as "isolated amyloid fibrils". The results emphasize that great caution must be taken in extrapolating amyloid fibril structure from isolated preparations to in situ tissue conditions.

摘要

已分离出的AA淀粉样纤维的超微结构组织是由一组缓慢扭曲的两个或更多原纤维组成,而原位观察到的却是具有紧密螺旋亚结构的管状实体,二者存在不一致性。在本研究中,对从实验性小鼠AA淀粉样蛋白中分离出的纤维的超微结构进行了高分辨率观察,并与原位观察到的结构进行比较,以期阐明这种不一致性的原因。原位纤维由一个类似微纤维的8-9纳米宽的核心组成,核心被一层硫酸乙酰肝素蛋白聚糖(HSPG)覆盖,在其外部有免疫组化鉴定为AA蛋白的1纳米宽的细丝与之相连。采用标准蒸馏水洗涤程序分离后,HSPG层和AA蛋白细丝从其核心分离并分散到水中。剩下的裸露的、不同程度松散的核心失去了其典型外观。在蒸馏水中,分离出的1纳米宽的AA蛋白细丝变得十分明显,并盘绕成宽3纳米的紧密螺旋,这些螺旋又组装成特征性的缓慢扭曲的两组平行原纤维,类似于之前报道的“分离的淀粉样纤维”。结果强调,从分离的制剂推断淀粉样纤维结构到原位组织条件时必须极其谨慎。

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