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Analysis of Epididymal Protein Synthesis and Secretion
Published on: August 25, 2018
The MDM2 Single-Nucleotide Polymorphism T309G Is Associated With the Development of Epimacular Membranes
Heng Jiang1, Bin Yan1, Zhishang Meng1
1Department of Ophthalmology, The Second Xiangya Hospital, Central South University, Changsha, China.
Abstract:
To investigate the role of the mouse double minute 2 (MDM2) gene single-nucleotide polymorphism (SNP) T309G in the development of epimacular membranes (EMMs) by analyzing the genotype distribution and consistency of the polymorphism in paired membrane-blood samples. This was a cross-sectional genetic association study of patients with proliferative vitreoretinopathy (PVR) or EMMs. PVR membranes (PVRMs), internal limiting membranes (ILMs) (PVR-ILMs) and blood samples (PVR-blood) from patients with PVR, and EMMs, EMM-ILMs and EMM-blood from patients with EMMs were collected. The genotype of all samples was determined by Sanger sequencing. Sex composition, mean age, the genotype distribution of MDM2 T309G, the allelic frequency of the MDM2 SNP309 G allele (% G) and the somatic mutation rate at the MDM2 T309G locus (% M) were analyzed and compared. The PVR and healthy Chinese donor groups were used as controls for different comparisons. The EMM group of 62 patients was older than the PVR group of 61 patients by an average of 8.87 years (p < 0.0001), but the two groups were statistically similar in the sex composition (p = 0.1754). Importantly, G allele carriers were at a higher risk of developing EMMs than non-G allele carriers (p = 0.0479; OR = 2.047). Moreover, EMM-blood exhibited a significantly higher % G than blood samples from healthy Chinese donors (EMM-blood: 56.78%, donors: 45.61%; p = 0.0256; OR = 1.567). Regarding membrane-blood consistency, % M was significantly different between PVRMs and EMMs (PVRMs: 2.63%, EMMs: 21.57%; p = 0.0097; OR = 10.18) but not between different types of ILMs (PVR-ILMs: 18.18%, EMM-ILMs: 29.17%; p = 0.6855). Furthermore, EMMs (p = 0.0053; OR = 8.250) and EMM-ILMs (p = 0.0233; OR = 14.40) from patients with preoperative macular holes were more predisposed toward somatic mutations at the MDM2 T309G locus than those from patients without preoperative macular holes. MDM2 T309G is associated with the development of EMMs. Herein, the MDM2 SNP309 G allele is first reported as an associated factor of EMMs in a Chinese population. In addition, EMMs and ILMs are genetically unstable at the MDM2 T309G locus, especially when complicated with preoperative macular holes.
Insights
The mouse double minute 2 (MDM2) T309G gene polymorphism is linked to epimacular membrane (EMM) development. The MDM2 SNP309 G allele increases EMM risk, and EMMs show genetic instability at this locus.
Area of Science:
- Ophthalmology
- Genetics
- Molecular Biology
Background:
- Epimacular membranes (EMMs) are a significant cause of visual impairment.
- The role of genetic factors, specifically single-nucleotide polymorphisms (SNPs), in EMM development is not fully understood.
Purpose of the Study:
- To investigate the association between the mouse double minute 2 (MDM2) gene single-nucleotide polymorphism (SNP) T309G and the development of epimacular membranes (EMMs).
- To analyze the genotype distribution and genetic consistency of the MDM2 T309G polymorphism in paired EMM and blood samples.
Main Methods:
- A cross-sectional genetic association study was conducted on patients with EMMs and proliferative vitreoretinopathy (PVR).
- Genotyping of MDM2 T309G was performed using Sanger sequencing on membrane and blood samples.
- Analysis included genotype distribution, allelic frequency of the G allele, and somatic mutation rates.
Main Results:
- The MDM2 SNP309 G allele was associated with an increased risk of developing EMMs (OR = 2.047, p = 0.0479).
- EMM blood samples showed a higher frequency of the G allele compared to healthy Chinese donors (56.78% vs 45.61%).
- EMMs exhibited significant genetic instability at the MDM2 T309G locus, particularly in patients with preoperative macular holes.
Conclusions:
- The MDM2 T309G polymorphism is associated with the pathogenesis of EMMs.
- The MDM2 SNP309 G allele is identified as a risk factor for EMMs in the Chinese population.
- EMMs and their associated internal limiting membranes demonstrate genetic instability at the MDM2 T309G locus, especially when macular holes are present.
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