Department of Neurology, Martin-Luther-University Halle-Wittenberg, Halle (Saale), Germany.
Institute of Physiological Chemistry, Martin-Luther-University Halle-Wittenberg, Halle (Saale), Germany.
PLoS One. 2013 Dec 11;8(12):e80520. doi: 10.1371/journal.pone.0080520. eCollection 2013.
Sialic acids (Sia) are widely expressed as terminal monosaccharides on eukaryotic glycoconjugates. They are involved in many cellular functions, such as cell-cell interaction and signal recognition. The key enzyme of sialic acid biosynthesis is the bifunctional UDP-N-acetylglucosamine-2-epimerase/N-acetylmannosamine kinase (GNE), which catalyses the first two steps of Sia biosynthesis in the cytosol. In this study we analysed sialylation of muscles in wild type (C57Bl/6 GNE (+/+)) and heterozygous GNE-deficient (C57Bl/6 GNE (+/-)) mice. We measured a significantly lower performance in the initial weeks of a treadmill exercise in C57Bl/6 GNE (+/-) mice compared to wild type C57Bl/6 GNE (+/+) animals. Membrane bound Sia of C57Bl/6 GNE (+/-) mice were reduced by 33-53% at week 24 and by 12-15% at week 80 in comparison to C57Bl/6 GNE (+/+) mice. Interestingly, membrane bound Sia concentration increased with age of the mice by 16-46% in C57Bl/6 GNE (+/+), but by 87-207% in C57Bl/6 GNE (+/-). Furthermore we could identify specific morphological changes in aged muscles. Here we propose that increased Sia concentrations in muscles are a characteristic feature of ageing and could be used as a marker for age-related changes in muscle.
唾液酸(Sia)作为糖缀合物上的末端单糖广泛表达于真核生物中。它们参与许多细胞功能,如细胞间相互作用和信号识别。唾液酸生物合成的关键酶是双功能 UDP-N-乙酰葡萄糖胺-2-差向异构酶/N-乙酰甘露糖胺激酶(GNE),它在细胞质中催化唾液酸生物合成的前两个步骤。在这项研究中,我们分析了野生型(C57Bl/6 GNE(+/+))和杂合 GNE 缺陷型(C57Bl/6 GNE(+/−))小鼠肌肉中的唾液酸化。与野生型 C57Bl/6 GNE(+/+)动物相比,C57Bl/6 GNE(+/−)小鼠在跑步机运动的最初几周表现出明显较低的运动性能。与 C57Bl/6 GNE(+/+)小鼠相比,C57Bl/6 GNE(+/−)小鼠在第 24 周时膜结合 Sia 减少了 33-53%,在第 80 周时减少了 12-15%。有趣的是,与 C57Bl/6 GNE(+/+)小鼠相比,C57Bl/6 GNE(+/−)小鼠的膜结合 Sia 浓度随年龄增长而增加 16-46%,但增加 87-207%。此外,我们还可以在老年肌肉中识别出特定的形态变化。在这里,我们提出肌肉中 Sia 浓度的增加是衰老的特征,可用作肌肉与年龄相关变化的标志物。