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抗鸡IV型和V型胶原蛋白的单克隆抗体:旋转投影后表位的电子显微镜定位

Monoclonal antibodies against chicken type IV and V collagens: electron microscopic mapping of the epitopes after rotary shadowing.

作者信息

Mayne R, Wiedemann H, Irwin M H, Sanderson R D, Fitch J M, Linsenmayer T F, Kühn K

出版信息

J Cell Biol. 1984 May;98(5):1637-44. doi: 10.1083/jcb.98.5.1637.

Abstract

The location of the epitopes for monoclonal antibodies against chicken type IV and type V collagens were directly determined in the electron microscope after rotary shadowing of antibody/collagen mixtures. Three monoclonal antibodies against type IV collagen were examined, each one of which was previously demonstrated to be specific for only one of the three pepsin-resistant fragments of the molecule. The three native fragments were designated (F1)2F2, F3, and 7S, and the antibodies that specifically recognize each fragment were called, respectively, IA8 , IIB12 , and ID2 . By electron microscopy, monoclonal antibody IA8 recognized an epitope located in the center of fragment (F1)2F2 and in tetramers of type IV collagen at a distance of 288 nm from the 7S domain, the region of overlap of four type IV molecules. Monoclonal antibody IIB12 , in contrast, recognized an epitope located only 73 nm from the 7S domain. This result therefore provides direct visual evidence that the F3 fragment is located closest to the 7S domain and the order of the fragments must be 7S-F3-(F1)2F2. The epitope for antibody ID2 was located in the overlap region of the 7S domain, and often several antibody molecules were observed to binding to a single 7S domain. The high frequency with which antibody molecules were observed to bind to fragments of type IV collagen suggests that there is a single population of type IV molecules of chain organization [alpha 1(IV)]2 alpha 2(IV), and that four identical molecules must form a tetramer that is joined in an antiparallel manner at the 7S domain. The monoclonal antibodies against type V collagen, called AB12 and DH2 , were both found to recognize epitopes close to one another, the epitopes being located 45-48 nm from one end of the type V collagen molecule. The significance of this result still remains uncertain, but suggests that this site is probably highly immunoreactive. It may also be related to the specific cleavage site of type V collagen by selected metalloproteinases and by alpha-thrombin. This cleavage site is also known to be located close to one end of the type V molecule.

摘要

通过对抗体/胶原蛋白混合物进行旋转投影后,在电子显微镜下直接确定了抗鸡IV型和V型胶原蛋白单克隆抗体的表位位置。检测了三种抗IV型胶原蛋白的单克隆抗体,之前已证实每种抗体仅对该分子的三种胃蛋白酶抗性片段之一具有特异性。这三种天然片段分别命名为(F1)2F2、F3和7S,特异性识别各片段的抗体分别称为IA8、IIB12和ID2。通过电子显微镜观察,单克隆抗体IA8识别位于片段(F1)2F2中心以及IV型胶原蛋白四聚体中距7S结构域288nm处的一个表位,7S结构域是四个IV型分子的重叠区域。相比之下,单克隆抗体IIB12识别的表位距7S结构域仅73nm。因此,该结果提供了直接的视觉证据,表明F3片段最靠近7S结构域,片段顺序必定为7S - F3 - (F1)2F2。抗体ID2的表位位于7S结构域的重叠区域,经常观察到几个抗体分子与单个7S结构域结合。观察到抗体分子与IV型胶原蛋白片段结合的高频率表明,存在单一群体的链组织为[α1(IV)]2α2(IV)的IV型分子,并且四个相同分子必须形成一个四聚体,该四聚体在7S结构域处以反平行方式连接。两种抗V型胶原蛋白的单克隆抗体AB12和DH2均被发现识别彼此靠近的表位,这些表位位于距V型胶原蛋白分子一端45 - 48nm处。该结果的意义仍不确定,但表明该位点可能具有高度免疫反应性。它也可能与特定金属蛋白酶和α - 凝血酶对V型胶原蛋白的特异性切割位点有关。已知该切割位点也位于V型分子一端附近。

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