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Comprehensive Mass Spectrometric Mapping of the Hydroxylated Amino Acid residues of the α1(V) Collagen Chain

机译:α1(V)胶原链的羟基化氨基酸残基的综合质谱图

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摘要

Aberrant expression of the type V collagen α1(V) chain can underlie the connective tissue disorder classic Ehlers-Danlos syndrome, and autoimmune responses against the α1(V) chain are linked to lung transplant rejection and atherosclerosis. The α1(V) collagenous COL1 domain is thought to contain greater numbers of post-translational modifications (PTMs) than do similar domains of other fibrillar collagen chains, PTMs consisting of hydroxylated prolines and lysines, the latter of which can be glycosylated. These types of PTMs can contribute to epitopes that underlie immune responses against collagens, and the high level of PTMs may contribute to the unique biological properties of the α1(V) chain. Here we use high resolution mass spectrometry to map such PTMs in bovine placental α1(V) and human recombinant pro-α1(V) procollagen chains. Findings include the locations of those PTMs that vary and those PTMs that are invariant between these α1(V) chains from widely divergent sources. Notably, an unexpectedly large number of hydroxyproline residues were mapped to the X-positions of Gly-X-Y triplets, contrary to expectations based on previous amino acid analyses of hydrolyzed α1(V) chains from various tissues. We attribute this difference to the ability of tandem mass spectrometry coupled to nanoflow chromatographic separations to detect lower-level PTM combinations with superior sensitivity and specificity. The data are consistent with the presence of a relatively large number of 3-hydroxyproline sites with less than 100% occupancy, suggesting a previously unknown mechanism for the differential modification of α1(V) chain and type V collagen properties.
机译:V型胶原蛋白α1(V)链的异常表达可能是结缔组织疾病经典Ehlers-Danlos综合征的基础,而针对α1(V)链的自身免疫反应与肺移植排斥反应和动脉粥样硬化有关。人们认为,α1(V)胶原质COL1结构域比其他原纤维胶原蛋白链的类似结构域包含更多的翻译后修饰(PTM),PTM由羟基脯氨酸和赖氨酸组成,后者可以被糖基化。这些类型的PTM可能构成针对胶原蛋白的免疫反应基础的表位,而高水平的PTM可能有助于α1(V)链的独特生物学特性。在这里,我们使用高分辨率质谱法在牛胎盘α1(V)和人重组原α1(V)原胶原链中绘制此类PTM。研究结果包括那些差异很大的PTM的位置,以及这些来自广泛不同来源的α1(V)链之间不变的PTM的位置。值得注意的是,出乎意料的大量羟基脯氨酸残基被定位到Gly-X-Y三胞胎的X位置,这与先前基于对来自各种组织的水解α1(V)链的氨基酸分析的预期相反。我们将此差异归因于串联质谱联用纳米流色谱分离技术以较低的PTM组合检测灵敏度和特异性的能力。数据与少于100%占用率的相对大量的3-羟基脯氨酸位点的存在是一致的,这提示了先前未知的α1(V)链和V型胶原蛋白特性的差异修饰机制。

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