Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer

Abstract To study the relationships between stromal cell-derived factor-1 (SDF-1ɑ) and renal cell carcinoma (RCC) susceptibility and the presence of single nucleotide polymorphisms in the human X-ray cross-complementary repair gene (XRCC1). Compare SDF-1 based on RCC related data in the TCGA databas...

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Main Authors: Wenjing Zhang, Yubo Su, Genquan Yue, Lingyan Zhao, Hailing Li, Min Jia, Yuqi Wang, Dongyang Liu, Haisheng Wang, Yumin Gao
Format: Article
Language:English
Published: Nature Portfolio 2024-02-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-024-53808-4
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author Wenjing Zhang
Yubo Su
Genquan Yue
Lingyan Zhao
Hailing Li
Min Jia
Yuqi Wang
Dongyang Liu
Haisheng Wang
Yumin Gao
author_facet Wenjing Zhang
Yubo Su
Genquan Yue
Lingyan Zhao
Hailing Li
Min Jia
Yuqi Wang
Dongyang Liu
Haisheng Wang
Yumin Gao
author_sort Wenjing Zhang
collection DOAJ
description Abstract To study the relationships between stromal cell-derived factor-1 (SDF-1ɑ) and renal cell carcinoma (RCC) susceptibility and the presence of single nucleotide polymorphisms in the human X-ray cross-complementary repair gene (XRCC1). Compare SDF-1 based on RCC related data in the TCGA database α, The expression difference of XRCC1 between RCC tissue and normal tissue; Collect 166 newly diagnosed RCC cases and 166 healthy individuals who underwent physical examinations during the same period, and detect genotype using iMLDR method. The results The rs1801157 locus (C:T) of the SDF-1α gene was not significantly associated with the pathohistological type, the rs1799782 locus (G:A) of the XRCC1 gene was associated with the pathohistological type of RCC, and there were interactions between rs1799782 and smoking, alcohol consumption, pesticide exposure, hair dye, and urine holding. The rs1799782 locus of the XRCC1 gene may be a key factor in the pathogenesis and pathological development of RCC. High SDF-1ɑ expression is a protective factor for the overall survival of patients with RCC, and SDF-1ɑ and XRCC1 may be important for the treatment of RCC.
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spelling doaj.art-d8a0aead3e1b47a5a96350598c21b9ec2024-05-05T11:15:15ZengNature PortfolioScientific Reports2045-23222024-02-0114111210.1038/s41598-024-53808-4Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancerWenjing Zhang0Yubo Su1Genquan Yue2Lingyan Zhao3Hailing Li4Min Jia5Yuqi Wang6Dongyang Liu7Haisheng Wang8Yumin Gao9School of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversityDepartment of Urology, Affiliated Hospital of Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversitySchool of Public Health, Inner Mongolia Medical UniversityAbstract To study the relationships between stromal cell-derived factor-1 (SDF-1ɑ) and renal cell carcinoma (RCC) susceptibility and the presence of single nucleotide polymorphisms in the human X-ray cross-complementary repair gene (XRCC1). Compare SDF-1 based on RCC related data in the TCGA database α, The expression difference of XRCC1 between RCC tissue and normal tissue; Collect 166 newly diagnosed RCC cases and 166 healthy individuals who underwent physical examinations during the same period, and detect genotype using iMLDR method. The results The rs1801157 locus (C:T) of the SDF-1α gene was not significantly associated with the pathohistological type, the rs1799782 locus (G:A) of the XRCC1 gene was associated with the pathohistological type of RCC, and there were interactions between rs1799782 and smoking, alcohol consumption, pesticide exposure, hair dye, and urine holding. The rs1799782 locus of the XRCC1 gene may be a key factor in the pathogenesis and pathological development of RCC. High SDF-1ɑ expression is a protective factor for the overall survival of patients with RCC, and SDF-1ɑ and XRCC1 may be important for the treatment of RCC.https://doi.org/10.1038/s41598-024-53808-4SDF-1α geneXRCC1 geneSNPRCCBioinformatics analysis
spellingShingle Wenjing Zhang
Yubo Su
Genquan Yue
Lingyan Zhao
Hailing Li
Min Jia
Yuqi Wang
Dongyang Liu
Haisheng Wang
Yumin Gao
Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
Scientific Reports
SDF-1α gene
XRCC1 gene
SNP
RCC
Bioinformatics analysis
title Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
title_full Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
title_fullStr Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
title_full_unstemmed Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
title_short Correlations of SDF-1ɑ and XRCC1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of SDF-1α and XRCC1 and the prognosis of renal cancer
title_sort correlations of sdf 1ɑ and xrcc1 gene polymorphisms with the risk of renal cancer development and bioinformatics studies of sdf 1α and xrcc1 and the prognosis of renal cancer
topic SDF-1α gene
XRCC1 gene
SNP
RCC
Bioinformatics analysis
url https://doi.org/10.1038/s41598-024-53808-4
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