首页> 外文期刊>The international journal of biochemistry and cell biology >Biofunctionalization of a generic collagenous triple helix with the alpha2beta1 integrin binding site allows molecular force measurements.
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Biofunctionalization of a generic collagenous triple helix with the alpha2beta1 integrin binding site allows molecular force measurements.

机译:具有alpha2beta1整联蛋白结合位点的通用胶原三螺旋的生物功能化可以进行分子力测量。

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The integrin alpha2beta1 plays an important role in force-transmitting cell-matrix interactions. It recognizes the peptide sequence GFOGER (O=4-hydroxy-proline) presented as trimer within a collagenous triple-helical framework. We produced the recombinant non-hydroxylated mini-collagen, termed FC3, which harbors the alpha2beta1 integrin recognition site. FC3 consists of a foldon-stabilized host triple helix of three chains with 10 GPP-repeats, into which the integrin binding motif was inserted. The triple-helical structure could further be stabilized by covalently cross-linking the three chains. Unlike collagen-I, FC3 lacks binding sites for matrix proteins and cellular receptors other than the collagen-binding integrins. It showed a preference for alpha2beta1 over alpha1beta1 integrin, especially when the chains were neither cross-linked nor prolyl-hydroxylated. Using FC3 as substratum for primary skin fibroblasts, we showed that the loss of alpha2beta1 integrin could not be compensated by other collagen-binding integrins, suggesting a major role of alpha2beta1 integrin in exerting sufficient mechanical force to induce or sustain cell spreading. Atomic force microscopy revealed that a single alpha2beta1 integrin can withstand tensile forces of up to approximately 160pN before it releases FC3. Moreover, FC3 is fully competent to agonistically elicit alpha2beta1 integrin-induced cell reactions, such as recruitment of alpha2beta1 integrin into focal adhesions and lamellipodia formation. The biofunctionalized mini-collagen sheds light on the molecular forces of the alpha2beta1 integrin-collagen interaction, which affects tissue homeostasis by contracting the connective tissue and by contributing to interstitial tissue pressure regulation. Additionally, biofunctionalized mini-collagens can be useful in force-resistant cell attachment to biomedical materials.
机译:整联蛋白alpha2beta1在力传递细胞矩阵相互作用中起着重要作用。它识别在胶原三螺旋框架内呈三聚体形式存在的肽序列GFOGER(O = 4-羟基脯氨酸)。我们生产了称为FC3的重组非羟基化微型胶原蛋白,其中包含alpha2beta1整合素识别位点。 FC3由具有10个GPP重复的三链折叠稳定的宿主三螺旋组成,整合素结合基序插入其中。三螺旋结构可以通过共价交联三个链来进一步稳定。与胶原蛋白I不同,FC3除了胶原蛋白结合整联蛋白外,缺乏针对基质蛋白和细胞受体的结合位点。它显示出比alpha1beta1整联蛋白更偏爱alpha2beta1,特别是当链既没有交联也没有脯氨酰羟基化时。使用FC3作为主要皮肤成纤维细胞的基质,我们发现alpha2beta1整合素的损失不能被其他胶原结合整联蛋白补偿,这表明alpha2beta1整合素在发挥足够的机械力以诱导或维持细胞扩散中起主要作用。原子力显微镜显示,单个alpha2beta1整联蛋白在释放FC3之前可以承受高达约160pN的拉力。此外,FC3完全有能力激动性地引发α2β1整合素诱导的细胞反应,例如将α2β1整合素募集到粘着斑和片状脂蛋白形成中。生物功能化的微型胶原蛋白阐明了α2beta1整联蛋白-胶原蛋白相互作用的分子力,该分子力通过收缩结缔组织和促进间质组织压力调节而影响组织稳态。此外,生物功能化的微型Collagens可用于将细胞抗力附着到生物医学材料上。

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