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首页> 外文期刊>Biochemistry >COMPARISON OF SECONDARY STRUCTURES IN WATER OF CHONDROITIN-4-SULFATE AND DERMATAN SULFATE - IMPLICATIONS IN THE FORMATION OF TERTIARY STRUCTURES
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COMPARISON OF SECONDARY STRUCTURES IN WATER OF CHONDROITIN-4-SULFATE AND DERMATAN SULFATE - IMPLICATIONS IN THE FORMATION OF TERTIARY STRUCTURES

机译:硫酸软骨素4和真皮硫酸盐水中二级结构的比较-对二级结构形成的启示。

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Chondroitin-4-sulfate (CS4) and dermatan sulfate (DS) were examined in D2O solution, with or without NaCl, by NMR at 300 MHz, to investigate the physicochemical consequences of epimerization of glucuronate (GlcUA in CS4) to iduronate (IdoUA in DS). Nuclear Overhauser effects (NOEs) and spin-lattice relaxation times following selective and nonselective inversion were measured at up to 70 degrees C. (1) NOEs confirmed C-4(1) conformations of sugar rings in N-acetylgalactosamine and GlcUA, and C-1(4) or S-2(0) in IdoUA. Conflict between NMR data and periodate oxidation kinetics over IdoUA conformations is resolvable by postulating conversion of monodentate periodate-C-1(4) complexes to conformations in which periodate oxidation can procede. (2) Pairs of glycosidic protons in CS4 and DS showed strong NOEs, implying that stretches of 2-fold helix were present, with carboxylate and acetamido groups close to each other on the same side of tapelike molecules, extending previous work in dimethyl sulfoxide solution. CS4 and DS have large hydrophobic patches in this configuration, similar to those in keratan sulfate and hyaluronan. (3) Selective and nonselective inversion-recoveries implied similar segmental and backbone mobilities and hence flexibilities in CS4 and DS. This is discussed in terms of intrinsic flexibility of glycosidic conformations, modified by hydrogen-bonded arrays. (4) We postulate that hydrophobic and hydrogen bonding drives DS self-aggregation. Stronger self-aggregation of DS compared with CS4 is attributed to increased intermolecular hydrogen-bonding in DS, secondary to decreased intramolecular hydrogen-bonding. This is partly because the axial OH groups in C-1(4) IdoUA cannot hydrogen-bond to neighboring sugars as can the equatorial OH groups in GlcUA of CS4.
机译:在300 MHz的NMR下,在有或没有NaCl的D2O溶液中,对4-硫酸软骨素(CS4)和硫酸皮肤素(DS)进行了研究,以研究葡萄糖醛酸酯(CS4中的GlcUA)向异氰酸酯(IdoUA)中的差向异构化的物理化学结果。 DS)。在高达70摄氏度的条件下测量了选择性和非选择性反转后的核Overhauser效应(NOEs)和自旋晶格弛豫时间。(1)NOE证实了N-乙酰半乳糖胺和GlcUA中糖环的C-4(1)构象,以及C在IdoUA中为-1(4)或S-2(0)。通过假定单齿高碘酸盐-C-1(4)配合物转化为可以进行高碘酸盐氧化的构型,可以解决IdoUA构型上NMR数据与高碘酸盐氧化动力学之间的冲突。 (2)CS4和DS中的成对的糖苷质子显示出很强的NOE,这表明存在2倍螺旋的延伸,在带状分子的同一侧上羧基和乙酰氨基基团彼此靠近,从而扩展了以前在二甲基亚砜溶液中的工作。 。与硫酸角质素和透明质酸中的那些相似,CS4和DS在此构型中具有较大的疏水性斑块。 (3)选择性和非选择性的反转恢复暗示了CS4和DS中类似的分段和主干活动,因此具有灵活性。关于糖苷构象的固有柔性,通过氢键阵列修饰,讨论了这一点。 (4)我们假设疏水键和氢键会驱动DS自聚集。与CS4相比,DS的更强自聚集归因于DS中分子间氢键的增加,其次是分子内氢键的减少。这部分是因为C-1(4)IdoUA中的轴向OH基不能像CS4的GlcUA中的赤道OH基那样氢键合到相邻的糖上。

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