254 nm紫外线辐射下小牛皮肤透明质酸(玻尿酸)与真皮I型小牛皮肤胶原蛋白的相互作用:玻尿酸改变胶原蛋白酪氨酸残基定性和定量二聚化的能力

J. Menter, Latoya Freeman, Ortega Edukye
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引用次数: 0

摘要

细胞外基质(ECM)是存在于所有组织和器官中的非细胞成分,不仅为细胞成分提供必要的物理支架,还启动组织形态发生、分化和稳态所需的关键生化和生物力学线索。大致分为两组,1)主要的纤维性ECM蛋白:胶原蛋白、弹性蛋白、纤维连接蛋白和层粘连蛋白。2)蛋白聚糖(pg)的分类是基于它们的定位和结合。尽管可能有许多不同的分子相互作用,但它们取决于细胞的状况(即“正常”、衰老、受伤/纤维化和癌变)。很少或没有数据表明周围的ECM对二酪氨酸形成的影响。作为一个更简单的模型,我们用透明质酸(HA)代替了总PG,并使用了纯化的小牛皮肤胶原酪氨酸,它在缓冲溶液和(接近)生理温度的254 nm紫外线下形成二酪氨酸(A2)。我们的研究结果揭示了一个复杂的温度依赖关系,涉及胶原蛋白HA结构和胶原蛋白的光化学激活参数。
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The Interaction(s) between Calf-Skin Hyaluronic Acid (Hyaluronan) and Dermal Type I Calf-Skin Collagen under 254 nm UV Radiation: Ability of Hyaluronan to Alter Qualitative and Quantitative Dimerization of Collagen Tyrosine Residues
The extracellular matrix (ECM) is the non-cellular component present within all tissues and organs, providing not only essential physical scaffolding for the cellular constituents and initiating crucial biochemical and biomechanical cues, required for tissue morphogenesis, differentiation and homeostasis. Roughly divided into two groups, these are 1) the main fibrous ECM proteins: collagens, elastins, fibronectins and laminins. 2) Classification of proteoglycans (PGs) is based on their location and binding. Although many different molecular interactions are possible, they depend on the cells’ condition (i.e. “Normal”, Aged, Wounded/Fibrotic, and cancerous). There is little or no data that addresses the influence of the surrounding ECM on dityrosine formation. As a simpler model, we have replaced total PG with hyaluronan (HA) and have used purified calf-skin collagen tyrosine, which forms dityrosine (A2) under 254 nm UV in buffered solution and (near) physiological temperatures. Our results reveal a complicated temperature dependence involving factors relating to collagen HA structure, and collagen’s photochemical activation parameters.
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