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首页> 外文期刊>The Biochemical Journal >Formation of glyoxal, methylglyoxal and 3-deoxyglucosone in the glycation of proteins by glucose.
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Formation of glyoxal, methylglyoxal and 3-deoxyglucosone in the glycation of proteins by glucose.

机译:葡萄糖在蛋白质糖基化中形成乙二醛,甲基乙二醛和3-脱氧葡糖酮。

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The glycation of proteins by glucose has been linked to the development of diabetic complications and other diseases. Early glycation is thought to involve the reaction of glucose with N-terminal and lysyl side chain amino groups to form Schiff's base and fructosamine adducts. The formation of the alpha-oxoaldehydes, glyoxal, methylglyoxal and 3-deoxyglucosone, in early glycation was investigated. Glucose (50 mM) degraded slowly at pH 7.4 and 37 degrees C to form glyoxal, methylglyoxal and 3-deoxyglucosone throughout a 3-week incubation period. Addition of t-BOC-lysine and human serum albumin increased the rate of formation of alpha-oxoaldehydes - except glyoxal and methylglyoxal concentrations were low with albumin, as expected from the high reactivity of glyoxal and methylglyoxal with arginine residues. The degradation of fructosyl-lysine also formed glyoxal, methylglyoxal and 3-deoxyglucosone. alpha-Oxoaldehyde formation was dependent on the concentration of phosphate buffer and availability of trace metal ions. This suggests that alpha-oxoaldehydes were formed in early glycation from the degradation of glucose and Schiff's base adduct. Since alpha-oxoaldehydes are important precursors of advanced glycation adducts, these adducts may be formed from early and advanced glycation processes. Short periods of hyperglycaemia, as occur in impaired glucose tolerance, may be sufficient to increase the concentrations of alpha-oxoaldehydes in vivo.
机译:葡萄糖将蛋白质糖基化与糖尿病并发症和其他疾病的发展有关。认为早期糖基化涉及葡萄糖与N末端和赖氨酰基侧链氨基的反应,以形成席夫氏碱和果糖胺加合物。研究了早期糖基化过程中α-乙醛,乙二醛,甲基乙二醛和3-脱氧葡萄糖苷的形成。葡萄糖(50 mM)在pH 7.4和37摄氏度下缓慢降解,在整个3周的培养期间内形成了乙二醛,甲基乙二醛和3-脱氧葡糖酮。 t-BOC-赖氨酸和人血清白蛋白的添加增加了α-氧醛的形成速率-除乙二醛和甲基乙二醛与白蛋白的浓度较低外,这是因为乙二醛和甲基乙二醛与精氨酸残基的高反应性所预期。果糖基赖氨酸的降解还形成了乙二醛,甲基乙二醛和3-脱氧葡萄糖苷。 α-氧醛的形成取决于磷酸盐缓冲液的浓度和微量金属离子的可用性。这表明在早期糖基化过程中,葡萄糖和席夫碱加合物的降解形成了α-氧醛。由于α-氧醛是高级糖基化加合物的重要前体,因此这些加合物可能由早期和高级糖基化过程形成。短期的高血糖症(如葡萄糖耐量下降)可能足以增加体内α-氧醛的浓度。

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