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Post-translational modifications in collagen type I of bone in a mouse model of aging

机译:老化鼠标模型中胶原蛋白Ⅰ型胶原型翻译修改

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The fracture resistance of cortical bone and matrix hydration are known to decline with advanced aging. However, the underlying mechanisms remain poorly understood, and so we investigated levels of matrix proteins and post-translational modifications (PTM) of collagen I in extracts from the tibia of 6-mo. and 20-mo. old BALB/ c mice (female and male analysis done separately). Liquid chromatography-tandem mass spectrometry (LC-MS/ MS) analysis revealed that the levels of collagen I deamidation at specific asparagine (Asn) and glutamine (Gln) residues significantly increased with age. Other non-enzymatic PTMs such as carboxymethylation of lysine (CML) were detected as well, but the relative abundance did not vary with age. No significant age-related differences in the abundance of hydroxylysine glycosylation sites were found, but hydroxylation levels at a few of the numerous lysine and proline hydroxylation sites significantly changed by a small amount with age. We performed molecular modeling and dynamics (MD) simulations for three triple helical fragments representing collagen I regions with prominent age-dependent increases in deamidation as identified by LC-MS/MS of male extracts. These 3 fragments included deamidated Asn and Gln residues as follows: 1) an Asn(428) site of the alpha 2(I) chain in which deamidation levels increased from 4.4% at 6-mo. to 8.1% at 20-mo., 2) an Asn983 site of the alpha 2(I) chain with a deamidation increase from 18.3% to 36.8% with age and an Asn(1052) site of the alpha 1(I) chain with consistent deamidation levels of similar to 60% across the age groups, and 3) a Gln(410) site of the alpha 1(I) chain that went from no detectable deamidation at 6-mo. to 2.7% at 20-mo. and a neighboring Asn(421) site of the same chain with an age-related deamidation increase from 3.6% to 16.3%. The deamidation levels at these sites inversely correlated with an estimate of toughness determined from three-point bending tests of the femur mid-diaphysis. MD revealed that the sidechains become more negatively charged at deamidated sites and that deamidation alters hydrogen bonding with water along the collagen backbone while increasing water interactions with the aspartic and glutamic acid sidechains. Our findings suggest a new mechanism of the age-dependent reduction in the fracture resistance of cortical bone whereby deamidation of Asn and Glu residues redistributes bound water within collagen I triple helix.
机译:已知皮质骨和基质水合的裂缝抗性随着先进的老化而下降。然而,潜在的机制仍然明显,因此我们研究了胶原蛋白I中的基质蛋白和翻译后修饰(PTM)的水平来自6-Mo的胫骨。和20-mo。旧BALB / C小鼠(分别完成的女性和男性分析)。液相色谱 - 串联质谱(LC-MS / MS)分析显示,随着年龄的增长,在特定天冬酰胺(ASN)和谷氨酰胺(GLN)残留物上的胶原I脱酰胺的水平显着增加。还检测到其他非酶促PTM,例如赖氨酸羧甲基化(CML),但相对丰度与年龄不相同。未发现羟基乙基化位点大量的显着年龄相关的差异,但许多赖氨酸和脯氨酸羟基化位点的羟基化水平随着年龄的少量而显着改变。我们对代表胶原I区域的三个三螺旋片段进行分子建模和动力学(MD)模拟,其突出的年龄依赖性依赖性依赖性增加,所述脱胺依赖性增加,所述脱胺依赖于由男性提取物的LC-MS / MS鉴定。这些3片段包括脱胺,如下:1)α2(I)链的ASN(428)位点,其中脱酰胺水平在6-Mo的4.4%增加。在20-mo的8.1%。,2)α2(i)链的Asn983位点,脱酰胺的末端增加18.3%至36.8%,Alpha 1(i)链的Asn(1052)位点一致的脱酰胺水平与年龄组的60%相似,3)α1(i)链的Gln(410)位点,其在6-Mo下没有可检测的脱胺。 20-Mo的2.7%。和与年龄相关的脱次的相同链的邻近ASN(421)位点从3.6%增加到16.3%。这些位点的脱酰胺水平与从股骨中间骨干的三点弯曲试验中确定的韧性估计相反。 MD揭示了侧链在脱胺位点变得更加负荷,并且脱胺改变沿胶原骨干的水改变氢键,同时增加与天冬氨酸和谷氨酸侧链的水相互作用。我们的研究结果表明,依赖于皮质骨的骨折抗性抗骨折的新机制,由此脱染ASN和Glu残基再分配胶原蛋白I的三重螺旋中的粘合水。

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