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C-Peptide: A molecule balancing insulin states in secretion and diabetes-associated depository conditions

机译:C肽:一种平衡分泌和糖尿病相关性存放状况下胰岛素状态的分子

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Gradually, the C-peptide part of proinsulin has evolved from being viewed upon as a side product of insulin synthesis and secretion to being considered as a bioactive peptide with endocrine functions. Independent of these, its biophysical properties and peptide interactions point to still further roles of C-peptide, in particular regarding possible links to diabetes-related protein aggregations. Insulin, which can deposit at the injection sites in the treatment of diabetes, and islet amyloid polypeptide (IAPP), which can form amyloid fibrils in the islets of Langerhans in diabetes type 2, are kept nonaggregated by charge-based interactions with C-peptide at defined stoichiometries. It is possible that the conformational stabilization of insulin and IAPP by C-peptide may also counterbalance their aggregational tendencies at the high peptide concentrations in the pancreatic β-cell secretory granules. The concentration imbalances of C-peptide, insulin, and IAPP from the hyperpeptidism early in T2DM patients and the insulin-only injections in T1DM patients may distort equilibria of these peptide interactions and promote protein aggregation. Additionally, the chaperone-like actions of C-peptide may increase bioavailability of insulin supplements given to T1DM patients and prevent the formation of insulin deposits. Similarly, peptide interactions may influence depository tendencies in additional peptide systems. In short, biophysical studies are relevant to establish all roles of peptide imbalances in T1DM and T2DM and associated depository diseases.
机译:逐渐地,胰岛素原的C-肽部分已经从被视为胰岛素合成和分泌的副产物发展到被认为具有内分泌功能的生物活性肽。独立于这些因素,其生物物理特性和肽相互作用表明C肽还有其他作用,特别是在与糖尿病相关蛋白聚集的可能联系方面。通过与C肽进行基于电荷的相互作用,胰岛素不会沉积在胰岛素的注射部位,而胰岛淀粉样多肽(IAPP)则可以在兰格汉斯的胰岛中形成淀粉样原纤维。以规定的化学计量比。 C肽对胰岛素和IAPP的构象稳定作用也可能抵消胰腺β细胞分泌颗粒中高肽浓度下它们的聚集趋势。 T2DM患者早期来自高肽血症的C肽,胰岛素和IAPP的浓度失衡以及T1DM患者仅胰岛素的注射可能使这些肽相互作用的平衡失调,并促进蛋白质聚集。另外,C-肽的伴侣样作用可以增加给予T1DM患者的胰岛素补充剂的生物利用度并防止胰岛素沉积物的形成。同样,肽相互作用可能会影响其他肽系统中的沉积趋势。简而言之,生物物理研究与确定肽不平衡在T1DM和T2DM及相关的存款性疾病中的所有作用有关。

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