COL9A1

COL9A1
  • 文章类型: Journal Article
    背景:先天性马蹄内翻足(CTEV)是一种常见的儿科畸形,具有多因素病因。这项荟萃分析的目的是探讨COL9A1基因变异与CTEV易感性之间的关系。
    方法:对电子书目数据库中2023年11月15日之前发布的相关文献进行了全面分析。通过具有95%置信区间(CI)的优势比(OR)阐明了联系的重要性,根据研究异质性,利用随机或固定效应模型。使用综合Meta分析软件(4.0版)进行统计学分析。
    结果:共有8项病例对照研究纳入分析,涉及833名CTEV患者和1280名健康个体。其中,四项研究调查了rs1135056变体,包括432例CTEV病例和603例对照;两项研究检查了rs35470562变体,189例CTEV病例和378例对照;两项研究探索了rs592121变异,包括212例CTEV病例和299例对照。结果揭示了COL9A1基因中rs1135056和rs35470562多态性之间的显著关联,提示总体人群中CTEV的风险增加。相反,rs592121变异体未发现这种关联.
    结论:我们的发现揭示了基因变异COL9A1rs1135056和rs35470562与CTEV易感性之间的实质性关联。相反,变体rs592121没有表现出任何相应的链接。然而,研究人群较少造成的局限性影响了结果的统计可靠性和概括性.
    BACKGROUND: Congenital talipes equinovarus (CTEV) is a prevalent pediatric deformity with a multifactorial etiology. The objective of this meta-analysis was to explore the association between genetic variations in COL9A1 and the susceptibility to CTEV.
    METHODS: A comprehensive analysis of pertinent literature released before November 15, 2023, in electronic bibliographic databases was carried out. The importance of the connection was clarified through odds ratios (ORs) with 95% confidence intervals (CIs), utilizing random or fixed-effects models depending on study heterogeneity. Statistical analysis was executed using Comprehensive Meta-Analysis software (Version 4.0).
    RESULTS: A total of eight case-control studies involving 833 CTEV patients and 1280 healthy individuals were included in the analysis. Among these, four studies investigated the rs1135056 variant, encompassing 432 CTEV cases and 603 controls; two studies examined the rs35470562 variant, with 189 CTEV cases and 378 controls; and two studies explored the rs592121 variant, including 212 CTEV cases and 299 controls. The results revealed a significant association between the rs1135056 and rs35470562 polymorphisms in the COL9A1 gene, suggesting an increased risk of CTEV in the overall population. Conversely, no such association was found for the rs592121 variant.
    CONCLUSIONS: Our findings reveal a substantial association between the genetic variants COL9A1 rs1135056 and rs35470562 and susceptibility to CTEV. Conversely, the variant rs592121 did not exhibit any corresponding link. However, the limitations imposed by the small study population have compromised the statistical reliability and generalizability of the results.
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  • 文章类型: Journal Article
    Stickler综合征(SS)是一种在眼部表现的遗传性疾病,耳朵,接头,脸和上颚。通常由于胶原基因COL2A1和COL11A1中的杂合致病变体而以显性方式遗传,很少可以隐性方式从COL9A1,COL9A2和COL9A3,COL11A1以及非胶原基因LRP2,LOXL3和GZF1中的变体遗传。我们回顾了已发表的隐性SS病例,其中包括来自23个家庭的40名患者。发现了纯合和复合杂合致病变体。高度近视接近普遍,感音神经性听力损失在IX型或XI型胶原基因变异的患者中非常常见,尽管LRP2和LOXL3患者的听力似乎幸免,并且在GZF1中是可变的。腭裂与XI型胶原变异有关,以及非胶原基因,但到目前为止还没有关于IX型胶原蛋白变体的报道。所有病例中有18%发生视网膜脱离,关节疼痛占15%。然而,这个群体的平均年龄是11岁,所以这两个问题的终生发生率可能被低估了。本文强调了在先天性感觉神经性耳聋中筛查SS的重要性,特别是当与近视有关时,以及需要警告患者和父母视网膜脱离的警告信号,定期眼科检查。
    Stickler syndrome (SS) is a genetic disorder with manifestations in the eye, ear, joints, face and palate. Usually inherited in a dominant fashion due to heterozygous pathogenic variants in the collagen genes COL2A1 and COL11A1, it can rarely be inherited in a recessive fashion from variants in COL9A1, COL9A2, and COL9A3, COL11A1, as well as the non-collagen genes LRP2, LOXL3 and GZF1. We review the published cases of recessive SS, which comprise 40 patients from 23 families. Both homozygous and compound heterozygous pathogenic variants are found. High myopia is near-universal, and sensorineural hearing loss is very common in patients with variants in genes for type IX or XI collagen, although hearing appears spared in the LRP2 and LOXL3 patients and is variable in GZF1. Cleft palate is associated with type XI collagen variants, as well as the non-collagen genes, but is so far unreported with type IX collagen variants. Retinal detachment has occurred in 18% of all cases, and joint pain in 15%. However, the mean age of this cohort is 11 years old, so the lifetime incidence of both problems may be underestimated. This paper reinforces the importance of screening for SS in congenital sensorineural hearing loss, particularly when associated with myopia, and the need to warn patients and parents of the warning signs of retinal detachment, with regular ophthalmic review.
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  • 文章类型: Journal Article
    As one of the most common types of osteoporosis, postmenopausal osteoporosis (PMOP) is caused by both genetic and environmental factors. Previous studies have indicated that SOX9 activity is tightly regulated to ensure normal bone mineral density (BMD) in the adult skeleton, and the COL9A1 promoter region can be transactivated by SOX9. In this study, we aimed to investigate the potential association between PMOP and the COL9A1 and SOX9 genes. A total of 10,443 postmenopausal women, including 2288 patients and 3557 controls in the discovery stage and 1566 patients and 3032 controls in the validation stage, were recruited. Forty-three tag SNPs (36 in COL9A1 and 7 in SOX9) were selected for genotyping to evaluate the association of the SOX9 gene with PMOP and BMD. Association and bioinformatics analyses were performed for PMOP. BMD and serum level of SOX9 were also utilized as quantitative phenotypes in further analyses. SNP rs73354570 of SOX9 was significantly associated with PMOP in both discovery stages (OR 1.24 [1.10-1.39], P = 3.56 × 10-4, χ2 = 12.75) and combined samples (OR 1.25 [1.15-1.37], P = 5.25 × 10-7, χ2 = 25.17). Further analyses showed that the SNP was also significantly associated with BMD and serum levels of the SOX9 protein. Our results provide further supportive evidence for the association of the SOX9 gene with PMOP and of the SOX9 gene with the variation of BMD in postmenopausal Han Chinese women. This study supports a role for SOX9 in the etiology of PMOP, adding to the current understanding of the susceptibility of osteoporosis.
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  • 文章类型: Journal Article
    Pathogenic variants in COL9A1 are primarily associated with autosomal recessive Stickler syndrome. Patients with COL9A1-associated Stickler syndrome (STL) present hearing loss (HL), ophthalmic manifestations and skeletal abnormalities. However, the clinical spectrum of patients with COL9A1 variants can also include multiple epiphyseal dysplasia, as well as non-syndromic HL that was observed in one previously reported proband. Exome sequencing was performed on the genomic DNA of an Iranian patient and his affected brother who both report non-syndromic HL. A 44.6 kb homozygous in-frame deletion spanning exons 6 to 33 of COL9A1 was detected via exome-based copy number variation analysis. The deleted exons were confirmed by PCR in the patient and his affected brother, who both have non-syndromic HL. Segregation analysis via qPCR confirmed the parents as heterozygous deletion carriers. Breakpoint analysis mapped the homozygous deletion spanning introns 5 to 33 (g.70,948,188_70,997,277del, NM_001851.4(COL9A1):c.697-3754_2112+769del, p.(Phe233_Ser704del), with an additional 67 bp of inserted intronic sequence that may have originated due to a fork stalling and template switching/microhomology-mediated break-induced replication (FoSTeS/MMBIR) mechanism. This mechanism has not been previously implicated in HL or STL. This is also the first reported copy number variation in COL9A1 that was identified through an exome data set in an Iranian family with apparent non-syndromic HL. The present study emphasizes the importance of exome-wide copy number variation analysis in molecular diagnosis and provides supporting evidence to associate COL9A1 with autosomal recessive non-syndromic HL.
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