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人纤维蛋白原构象的免疫化学图谱。γ95 - 264片段在天然纤维蛋白原中无法与抗体结合,但通过血浆裂解逐渐暴露。

Immunochemical mapping of the conformation of human fibrinogen. The gamma 95-264 segment in inaccessible to antibody in native fibrinogen but progressively exposed by plasmic cleavage.

作者信息

Fair D S, Edgington T S, Plow E F

出版信息

J Biol Chem. 1981 Aug 10;256(15):8018-23.

PMID:6167572
Abstract

The accessibility of the gamma 95-264 sequence to specific antibody probes in the native fibrinogen molecule and its plasmic cleavage fragments have been investigated. The gamma 95-264 segment was generated by cyanogen bromide cleavage of the gamma chain and isolated by gel filtration and ion exchange chromatography. Rabbit antisera to this peptide and to gamma chain recognized at least five antigenic loci uniformly distributed throughout this segment. In primary binding assays, antibodies to gamma 95-264 bound gamma 95-264, free gamma chain, and fibrinogen fragment D, but not native fibrinogen. Also, gamma 95-264 was bound by antibodies to gamma chain and fibrinogen fragment D, but not by antibodies generated to native fibrinogen. Thus, the gamma 95-264 sequence was not accessible to antibody in the native structure. In competitive equilibrium radioimmunoassays, neither native fibrinogen nor highly soluble fibrinogen fraction I-9 inhibited the binding of gamma 95-264 by its antiserum or anti-gamma chain. With plasmic cleavage, however, the gamma 95-264 sequence became accessible to antibody and the series of fragments D greater than Y greater than D:E = X describes the relative reactivity of the gamma chain sequence in fibrinogen degradation products. Differential expression of gamma 95-264 antigenic loci was also observed with D fragments differing in molecular weight. Plasmic cleavage of cross-linked and noncross-linked fibrin generated D fragments which did not express gamma 95-264 as well as fibrinogen D derivatives, indicating that the D domains of fibrinogen and fibrin are immunochemically distinguishable. These findings indicate that the central segment of the gamma chain is inaccessible to antibody in native fibrinogen, but that proper surface orientation is achieved upon plasmic degradation.

摘要

已对天然纤维蛋白原分子及其血浆裂解片段中γ95 - 264序列与特异性抗体探针的可及性进行了研究。γ95 - 264片段是通过γ链的溴化氰裂解产生的,并通过凝胶过滤和离子交换色谱法分离。针对该肽段和γ链的兔抗血清识别出至少五个均匀分布于该片段的抗原位点。在初次结合试验中,针对γ95 - 264的抗体结合γ95 - 264、游离γ链和纤维蛋白原片段D,但不结合天然纤维蛋白原。此外,γ95 - 264被针对γ链和纤维蛋白原片段D的抗体结合,但不被针对天然纤维蛋白原产生的抗体结合。因此,γ95 - 264序列在天然结构中不能被抗体识别。在竞争性平衡放射免疫测定中,天然纤维蛋白原和高溶解性纤维蛋白原组分I - 9均不抑制其抗血清或抗γ链对γ95 - 264的结合。然而,经血浆裂解后,γ95 - 264序列变得可被抗体识别,并且一系列片段D大于Y大于D:E = X描述了纤维蛋白原降解产物中γ链序列的相对反应性。在分子量不同的D片段中也观察到了γ95 - 264抗原位点的差异表达。交联和非交联纤维蛋白的血浆裂解产生的D片段以及纤维蛋白原D衍生物均不表达γ95 - 264,这表明纤维蛋白原和纤维蛋白的D结构域在免疫化学上是可区分的。这些发现表明,γ链的中央片段在天然纤维蛋白原中不能被抗体识别,但在血浆降解时可获得合适的表面取向。

相似文献

1
Immunochemical mapping of the conformation of human fibrinogen. The gamma 95-264 segment in inaccessible to antibody in native fibrinogen but progressively exposed by plasmic cleavage.人纤维蛋白原构象的免疫化学图谱。γ95 - 264片段在天然纤维蛋白原中无法与抗体结合,但通过血浆裂解逐渐暴露。
J Biol Chem. 1981 Aug 10;256(15):8018-23.
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Lymphocyte suppressive peptides from fibrinogen are derived predominantly from the A alpha chain.来自纤维蛋白原的淋巴细胞抑制肽主要源自Aα链。
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The role of soluble cross-linked fibrin in D dimer immunoreactivity of plasmic digests.可溶性交联纤维蛋白在血浆消化物D-二聚体免疫反应性中的作用。
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Conformational and structural modulation of the NH2-terminal regions of fibrinogen and fibrin associated with plasmin cleavage.与纤溶酶裂解相关的纤维蛋白原和纤维蛋白NH2末端区域的构象和结构调节。
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Comparison of the physicochemical properties of fragment D derivatives of fibrinogen and fragment D-D of cross-linked fibrin.纤维蛋白原片段D衍生物与交联纤维蛋白片段D-D的物理化学性质比较。
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A re-examination of the cleavage of fibrinogen and fibrin by plasmin.纤溶酶对纤维蛋白原和纤维蛋白裂解作用的重新研究。
J Biol Chem. 1975 Sep 25;250(18):7210-8.

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