Department of Oral Science, Graduate School of Medicine, Chiba University, Chiba, Japan.
Division of Oral and Craniofacial Health Sciences, Adams School of Dentistry, University of North Carolina at Chapel Hill, NC, USA.
Bone. 2022 Jan;154:116242. doi: 10.1016/j.bone.2021.116242. Epub 2021 Oct 27.
Lysyl hydroxylase 2 (LH2) is an enzyme that catalyzes the hydroxylation of lysine (Lys) residues in fibrillar collagen telopeptides, a critical post-translational modification for the stability of intermolecular cross-links. Though abnormal LH2 activities have been implicated in various diseases including Bruck syndrome, the molecular basis of the pathologies is still not well understood. Since LH2 null mice die at early embryonic stage, we generated LH2 heterozygous (LH2) mice in which LH2 level is significantly diminished, and characterized collagen and bone phenotypes using femurs. Compared to the wild-type (WT), LH2 collagen showed a significant decrease in the ratio of hydroxylysine (Hyl)- to the Lys-aldehyde-derived collagen cross-links without affecting the total number of aldehydes involved in cross-links. Mass spectrometric analysis revealed that, in LH2 type I collagen, the extent of hydroxylation of all telopeptidyl Lys residues was significantly decreased. In the helical domain, Lys hydroxylation at the cross-linking sites was either unaffected or slightly lower, but other sites were significantly diminished compared to WT. In LH2 femurs, mineral densities of cortical and cancellous bones were significantly decreased and the mechanical properties of cortical bones evaluated by nanoindentation analysis were compromised. When cultured, LH2 osteoblasts poorly produced mineralized nodules compared to WT osteoblasts. These data provide insight into the functionality of LH2 in collagen molecular phenotype and its critical role in bone matrix mineralization and mechanical properties.
赖氨酰羟化酶 2(LH2)是一种酶,可催化纤维胶原末端肽中天冬氨酸残基的羟化,这是分子间交联稳定性的关键翻译后修饰。尽管异常的 LH2 活性与包括布鲁克综合征在内的各种疾病有关,但病理的分子基础仍不清楚。由于 LH2 缺失小鼠在胚胎早期死亡,我们在 LH2 杂合子(LH2)小鼠中生成了 LH2,其中 LH2 水平显著降低,并使用股骨对胶原和骨表型进行了特征分析。与野生型(WT)相比,LH2 胶原中羟赖氨酸(Hyl)与醛衍生胶原交联的比例显著降低,而不影响交联中涉及的醛总数。质谱分析显示,在 LH2 型 I 胶原中,所有末端肽赖氨酸残基的羟化程度显著降低。在螺旋结构域中,交联部位赖氨酸羟化作用不受影响或略有降低,但与 WT 相比,其他部位明显降低。在 LH2 股骨中,皮质骨和松质骨的矿物质密度显著降低,通过纳米压痕分析评估的皮质骨的机械性能受损。当培养时,LH2 成骨细胞与 WT 成骨细胞相比,矿化结节的产生能力较差。这些数据提供了对 LH2 在胶原分子表型中的功能及其在骨基质矿化和机械性能中的关键作用的深入了解。