Salmon Cristiane R, Giorgetti Ana Paula O, Paes Leme Adriana F, Domingues Romênia R, Kolli Tamara N, Foster Brian L, Nociti Francisco H
Department of Prosthodontics and Periodontics, Division of Periodontics, Piracicaba Dental School, State University of Campinas, São Paulo, Brazil.
National Biosciences Laboratory, Brazilian Synchrotron Light Laboratory, Campinas, SP, Brazil.
Bone. 2017 Aug;101:219-229. doi: 10.1016/j.bone.2017.05.014. Epub 2017 May 17.
Proteomic analysis of extracellular matrices (ECM) of dentoalveolar tissues can provide insights into developmental, pathological, and reparative processes. However, targeted dissection of mineralized tissues, dental cementum (DC), alveolar bone (AB), and dentin (DE), presents technical difficulties. We demonstrate an approach combining EDTA decalcification and laser capture microdissection (LCM), followed by liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS), to analyze proteome profiles of these tissues. Using the LCM-LC-MS/MS approach, a total of 243 proteins was identified from all tissues, 193 proteins in DC, 147 in AB, and 135 proteins DE. Ninety proteins (37% of total) were common to all tissues, whereas 52 proteins (21%) were overlapping in only two. Also, 101 (42%) proteins were exclusively detected in DC (60), AB (15), or DE (26). Identification in all tissues of expected ECM proteins including collagen alpha-1(I) chain (COL1A1), collagen alpha-1(XII) chain (COL12A1), biglycan (BGN), asporin (ASPN), lumican (LUM), and fibromodulin (FMOD), served to validate the approach. Principal component analysis (PCA) and hierarchical clustering identified a high degree of similarity in DC and AB proteomes, whereas DE presented a distinct dataset. Exclusively and differentially identified proteins were detected from all three tissues. The protein-protein interaction network (interactome) of DC was notable for its inclusion of several indicators of metabolic function (e.g. mitochondrial proteins, protein synthesis, and calcium transport), possibly reflecting cementocyte activity. The DE proteome included known and novel mineralization regulators, including matrix metalloproteinase 20 (MMP-20), 5' nucleotidase (NT5E), and secreted phosphoprotein 24 (SPP-24 or SPP-2). Application of the LCM-LC-MS/MS approach to dentoalveolar tissues would be of value in many experimental designs, including developmental studies of transgenic animals, investigation of treatment effects, and identification of novel regenerative factors.
牙槽组织细胞外基质(ECM)的蛋白质组学分析能够为发育、病理和修复过程提供深入见解。然而,对矿化组织、牙骨质(DC)、牙槽骨(AB)和牙本质(DE)进行靶向解剖存在技术难题。我们展示了一种将乙二胺四乙酸(EDTA)脱钙与激光捕获显微切割(LCM)相结合的方法,随后进行液相色谱-串联质谱联用(LC-MS/MS),以分析这些组织的蛋白质组图谱。使用LCM-LC-MS/MS方法,从所有组织中共鉴定出243种蛋白质,其中牙骨质中有193种,牙槽骨中有147种,牙本质中有135种。90种蛋白质(占总数的37%)在所有组织中都存在,而52种蛋白质(占21%)仅在两种组织中重叠。此外,101种(占42%)蛋白质仅在牙骨质(60种)、牙槽骨(15种)或牙本质(26种)中被检测到。在所有组织中鉴定出预期的ECM蛋白质,包括胶原α-1(I)链(COL1A1)、胶原α-1(XII)链(COL12A1)、双糖链蛋白聚糖(BGN)、抑钙素(ASPN)、纤连蛋白(LUM)和纤维调节蛋白(FMOD),这验证了该方法的有效性。主成分分析(PCA)和层次聚类表明,牙骨质和牙槽骨的蛋白质组具有高度相似性,而牙本质呈现出独特的数据集。在所有三种组织中均检测到了独特且差异表达的蛋白质。牙骨质的蛋白质-蛋白质相互作用网络(相互作用组)因其包含多种代谢功能指标(如线粒体蛋白质、蛋白质合成和钙转运)而值得关注,这可能反映了牙骨质细胞的活性。牙本质蛋白质组包括已知和新发现的矿化调节因子,包括基质金属蛋白酶20(MMP-20)、核苷酸酶(NT5E)和分泌磷蛋白24(SPP-24或SPP-2)。将LCM-LC-MS/MS方法应用于牙槽组织在许多实验设计中具有重要价值,包括转基因动物的发育研究、治疗效果的研究以及新型再生因子的鉴定。