Orthopaedics Clinic Medical University of Silesia, Wojewódzki Szpital Specjalistyczny nr5 41-200 Sosnowiec, Pl. Medyków 1, Poland.
BMC Musculoskelet Disord. 2012 Dec 23;13:259. doi: 10.1186/1471-2474-13-259.
VDR may be considered as a candidate gene potentially related to idiopathic scoliosis susceptibility and natural history. Transcriptional profile of VDR mRNA isoforms might be changed in the structural tissues of the scoliotic spine and potentially influence the expression of VDR responsive genes. The purpose of the study was to determine differences in mRNA abundance of VDR isoforms in bone, cartilage and paravertebral muscles between tissues from curve concavity and convexity, between JIS and AIS and to identify VDR responsive genes differentiating juvenile and adolescent idiopathic scoliosis in paravertebral muscles.
In a group of 29 patients with JIS and AIS, specimens of bone, cartilage, paravertebral muscles were harvested at the both sides of the curve apex together with peripheral blood samples. Extracted total RNA served as a matrix for VDRs and VDRl mRNA quantification by QRT PCR. Subsequent microarray analysis of paravertebral muscular tissue samples was performed with HG U133A chips (Affymetrix). Quantitative data were compared by a nonparametric Mann Whitney U test. Microarray results were analyzed with GeneSpring 11GX application. Matrix plot of normalized log-intensities visualized the degree of differentiation between muscular tissue transcriptomes of JIS and AIS group. Fold Change Analysis with cutoff of Fold Change ≥2 identified differentially expressed VDR responsive genes in paravertebral muscles of JIS and AIS.
No significant differences in transcript abundance of VDR isoforms between tissues of the curve concavity and convexity were found. Statistically significant difference between JIS and AIS group in mRNA abundance of VDRl isoform was found in paravertebral muscles of curve concavity. Higher degree of muscular transcriptome differentiation between curve concavity and convexity was visualized in JIS group. In paravertebral muscles Tob2 and MED13 were selected as genes differentially expressed in JIS and AIS group.
In Idiopathic Scolioses transcriptional activity and alternative splicing of VDR mRNA in osseous, cartilaginous, and paravertebral muscular tissues are tissue specific and equal on both sides of the curve. The number of mRNA copies of VDRl izoform in concave paravertebral muscles might be one of the factors differentiating JIS and AIS. In paravertebral muscles Tob2 and Med13 genes differentiate Adolescent and Juvenile type of Idiopathic Scoliosis.
维生素 D 受体(VDR)可能被认为是与特发性脊柱侧凸易感性和自然史相关的候选基因。VDR mRNA 异构体的转录谱可能在脊柱侧凸结构组织中发生变化,并可能影响 VDR 反应基因的表达。本研究的目的是确定骨、软骨和椎旁肌肉中 VDR 异构体在曲线凹侧和凸侧、JIS 和 AIS 之间以及在椎旁肌肉中区分青少年特发性脊柱侧凸的 VDR 反应基因的 mRNA 丰度的差异。
在 29 例 JIS 和 AIS 患者中,在曲线顶点两侧以及外周血样中采集骨、软骨、椎旁肌肉标本。提取的总 RNA 用作 QRT-PCR 定量 VDR 和 VDRl mRNA 的基质。随后,使用 HG U133A 芯片(Affymetrix)对椎旁肌肉组织样本进行微阵列分析。采用非参数 Mann Whitney U 检验比较定量数据。使用 GeneSpring 11GX 应用程序分析微阵列结果。标准化对数强度矩阵图可视化了 JIS 和 AIS 组椎旁肌肉转录组之间的分化程度。使用折叠变化分析(cutoff of Fold Change≥2)鉴定 JIS 和 AIS 椎旁肌肉中差异表达的 VDR 反应基因。
在曲线凹侧和凸侧的组织中,VDR 异构体的转录丰度没有显著差异。在曲线凹侧的椎旁肌肉中,JIS 和 AIS 组之间 VDRl 异构体的 mRNA 丰度存在统计学差异。JIS 组在曲线凹侧和凸侧之间的肌肉转录组分化程度较高。在椎旁肌肉中,Tob2 和 MED13 被选为 JIS 和 AIS 组差异表达的基因。
在特发性脊柱侧凸中,骨、软骨和椎旁肌肉组织中 VDR mRNA 的转录活性和选择性剪接是组织特异性的,并且在曲线两侧是相等的。凹侧椎旁肌肉中 VDRl 异构体的 mRNA 拷贝数可能是区分 JIS 和 AIS 的因素之一。在椎旁肌肉中,Tob2 和 Med13 基因区分青少年和青少年特发性脊柱侧凸的类型。