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纤维蛋白原与培养的内皮细胞之间的相互作用。迁移诱导与特异性结合。

Interaction between fibrinogen and cultured endothelial cells. Induction of migration and specific binding.

作者信息

Dejana E, Languino L R, Polentarutti N, Balconi G, Ryckewaert J J, Larrieu M J, Donati M B, Mantovani A, Marguerie G

出版信息

J Clin Invest. 1985 Jan;75(1):11-8. doi: 10.1172/JCI111661.

Abstract

It has been suggested that fibrinogen (fg) or its physiological derivatives influence the motility and growth of endothelial cells (ECs), but direct support for this concept is still lacking. In the present study, the capacity of fg to interact with ECs and induce the migration of ECs was examined. The capacity of fg to induce EC migration was studied by means of a modification of the Boyden chamber technique. fg in the lower compartment of the chamber caused a time- and concentration-dependent migration of ECs across filters. fg present in equal concentrations above and below the filter increased EC migration, but the maximal effect invariably occurred in the presence of a gradient between the lower and the upper compartments. Trypsin or plasmin digestion of fg and preincubation of fg with Fab fragments from specific antibody completely abolished fg-induced EC migration. Dialysis of fg to eliminate small peptides that might contaminate the preparation did not modify fg-induced migration. Plasma obtained from healthy donors induced EC migration, but plasma from an afibrinogenemic patient was completely ineffective. The addition of purified fg to afibrinogenemic plasma restored plasma-induced EC migration. Plasmin degradation fragments D and E, of 100,000 and 50,000 mol wt, respectively, did not induce EC migration. However, fragment E caused dose-related inhibition of fg-induced EC migration Direct interaction of highly purified radioiodinated human fg with cultured human and bovine Ecs was observed. The binding was time dependent and plateaued at 10 min. Nonlabeled fg in a large molar excess inhibited the interaction, but unrelated proteins, including fibronectin, ovalbumin, and myoglobin, did not. Monospecific Fab fragments directed to fg inhibited binding by 38% at a 50 to 1 molar ratio whereas nonimmune Fab caused only 2% inhibition at a similar concentration. The binding of 125I-fg with ECs was saturable, and an apparent dissociation constant of 0.23 x 10(-6) M was estimated from binding isotherms. After 30 min of incubation the interaction between 125I-fg and the cells was completely reversible and displaceable by a large molar excess of unlabeled fg. Autoradiography of the display of EC-bound 125I on polyacrylamide gel showed the constitutive B beta- and gamma-chains of the fg molecule, with a partial loss of the A alpha-chain. Purified fragment E and E were tested for their capacity to inhibit fg binding. At a 1 to 400 125I-fg-to-fragment molar ratio, fragment E, which also inhibited migration, competed for binding by 44%, but fragment D was completely ineffective. These data show that fg may specifically associate with ECs and induce migration of these cells; it also appears that the structural requirement of this activity is located in the N-terminal part of the molecule.

摘要

有人提出纤维蛋白原(fg)或其生理衍生物会影响内皮细胞(ECs)的运动性和生长,但这一概念仍缺乏直接证据支持。在本研究中,检测了fg与ECs相互作用并诱导ECs迁移的能力。通过改良的Boyden小室技术研究了fg诱导ECs迁移的能力。小室下层的fg导致ECs跨过滤器的迁移呈时间和浓度依赖性。过滤器上下层存在等浓度的fg时会增加ECs迁移,但最大效应总是在上下层之间存在梯度时出现。用胰蛋白酶或纤溶酶消化fg以及用特异性抗体的Fab片段对fg进行预孵育可完全消除fg诱导的ECs迁移。对fg进行透析以去除可能污染制剂的小肽,并不会改变fg诱导的迁移。从健康供体获得的血浆可诱导ECs迁移,但来自无纤维蛋白原血症患者的血浆则完全无效。向无纤维蛋白原血症血浆中添加纯化的fg可恢复血浆诱导的ECs迁移。纤溶酶降解片段D和E,分子量分别为100,000和50,000,不会诱导ECs迁移。然而,片段E会导致与剂量相关的fg诱导的ECs迁移抑制。观察到高度纯化的放射性碘化人fg与培养的人和牛ECs的直接相互作用。这种结合具有时间依赖性,在10分钟时达到平台期。大摩尔过量的未标记fg可抑制这种相互作用,但包括纤连蛋白、卵清蛋白和肌红蛋白在内的无关蛋白质则无此作用。针对fg的单特异性Fab片段在50:1的摩尔比下可使结合抑制38%,而在相似浓度下非免疫Fab仅导致2%的抑制。125I-fg与ECs的结合是可饱和的,根据结合等温线估计其表观解离常数为0.23×10(-6)M。孵育30分钟后,125I-fg与细胞之间的相互作用是完全可逆的,并且可被大摩尔过量的未标记fg取代。聚丙烯酰胺凝胶上EC结合的125I的放射自显影显示了fg分子的组成性Bβ链和γ链,Aα链部分缺失。测试了纯化的片段E和E抑制fg结合的能力。在125I-fg与片段的摩尔比为1:400时,也能抑制迁移的片段E竞争结合的能力为44%,但片段D则完全无效。这些数据表明fg可能与ECs特异性结合并诱导这些细胞迁移;此外,这种活性的结构要求似乎位于分子的N末端部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ab6/423387/335c12661925/jcinvest00118-0026-a.jpg

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