Oral and Craniofacial Health Sciences, School of Dentistry, University of North Carolina , Chapel Hill, North Carolina 27599, United States.
Nippi Research Institute of Biomatrix , Ibaraki 302-0017, Japan.
J Proteome Res. 2017 Aug 4;16(8):2914-2923. doi: 10.1021/acs.jproteome.7b00190. Epub 2017 Jul 25.
Cyclophilin B (CypB) is an endoplasmic reticulum-resident protein that regulates collagen folding, and also contributes to prolyl 3-hydroxylation (P3H) and lysine (Lys) hydroxylation of collagen. In this study, we characterized dentin type I collagen in CypB null (KO) mice, a model of recessive osteogenesis imperfecta type IX, and compared to those of wild-type (WT) and heterozygous (Het) mice. Mass spectrometric analysis demonstrated that the extent of P3H in KO collagen was significantly diminished compared to WT/Het. Lys hydroxylation in KO was significantly diminished at the helical cross-linking sites, α1/α2(I) Lys-87 and α1(I) Lys-930, leading to a significant increase in the under-hydroxylated cross-links and a decrease in fully hydroxylated cross-links. The extent of glycosylation of hydroxylysine residues was, except α1(I) Lys-87, generally higher in KO than WT/Het. Some of these molecular phenotypes were distinct from other KO tissues reported previously, indicating the dentin-specific control mechanism through CypB. Histological analysis revealed that the width of predentin was greater and irregular, and collagen fibrils were sparse and significantly smaller in KO than WT/Het. These results indicate a critical role of CypB in dentin matrix formation, suggesting a possible association between recessive osteogenesis imperfecta and dentin defects that have not been clinically detected.
钙网蛋白 B(CypB)是一种内质网驻留蛋白,可调节胶原折叠,还参与脯氨酰 3-羟化(P3H)和赖氨酸(Lys)羟化胶原。在这项研究中,我们对 CypB 缺失(KO)小鼠的牙本质 I 型胶原进行了表征,该小鼠是隐性成骨不全症 IX 型的模型,并与野生型(WT)和杂合型(Het)小鼠进行了比较。质谱分析表明,KO 胶原中的 P3H 程度明显低于 WT/Het。KO 中的 Lys 羟化在螺旋交联部位 α1/α2(I)Lys-87 和 α1(I)Lys-930 显著减少,导致低羟化交联物显著增加,完全羟化交联物减少。除了 α1(I)Lys-87 外,KO 中羟赖氨酸残基的糖基化程度通常高于 WT/Het。这些分子表型中的一些与之前报道的其他 KO 组织不同,表明 CypB 具有牙本质特异性的调控机制。组织学分析显示,KO 的前期牙本质宽度较大且不规则,胶原纤维稀疏且明显小于 WT/Het。这些结果表明 CypB 在牙本质基质形成中起着关键作用,表明隐性成骨不全症与临床上尚未检测到的牙本质缺陷之间可能存在关联。