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The single-nucleotide polymorphism rs743572 of CYP17A1 shows significant association with polycystic ovary syndrome: a meta-analysis

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TLDR
The rs743572 T>C mutation was most likely to be associated with PCOS risk under the recessive model, and the mutant genotype CC may increase susceptibility to PCOS in Caucasians rather than Asians.
Abstract
Polycystic ovary syndrome (PCOS) is a multifactorial reproductive and endocrine disease, believed to be caused by aberrant steroid biosynthesis pathways involving cytochrome P450, 17α-hydroxylase (CYP17A1). This meta-analysis aimed to evaluate the association between CYP17A1 polymorphism rs743572 and PCOS risk. Studies on the CYP17A1 gene were retrieved by searching PubMed, Embase and Web of Science and statistical analyses were performed by STATA software. Fifteen eligible studies were included, dated from January 1994 to 19 November 2020, involving 2277 patients with PCOS and 1913 control individuals. Overall, the results showed that the rs743572 T>C mutation was most likely to be associated with PCOS risk under the recessive model, which was further confirmed by heterogeneity analysis and publication bias detection (CC versus CT + TT, odds ratio [OR] 1.24, 95% confidence interval [CI] 1.02–1.50, P = 0.028, I² = 35.9%). Moreover, subgroup analysis by ethnicity demonstrated that Caucasian but not Asian women carrying the CC genotype of rs743572 had an elevated risk of PCOS (CC versus CT + TT, OR 1.45, 95% CI 1.03–2.06, P = 0.035, I² = 15.10%, six studies). In conclusion, rs743572 is highly likely to be a risk factor for PCOS, and the mutant genotype CC may increase susceptibility to PCOS in Caucasians rather than Asians.

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Diagnostic criteria for polycystic ovary syndrome

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References
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Journal ArticleDOI

CYP11A1 and CYP17 promoter polymorphisms associate with hyperandrogenemia in polycystic ovary syndrome.

TL;DR: Polymorphisms in promoter regions of the two key androgen-regulating genes, CYP11A1 and CYP17, were found to be significantly associated with T levels in the cohort of well-characterized PCOS cases as compared with controls.
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Polymorphism T --> C (-34 base pairs) of gene CYP17 promoter in women with polycystic ovary syndrome is associated with increased body weight and insulin resistance: a preliminary study.

TL;DR: The data suggest that the frequency of the A2 allele is similar between PCos patients and HW; however, the presence of this gene defect in PCOS patients seems to be associated with increase in body weight, abdominal adiposity, and metabolic components.
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Disorders of androgen synthesis--from cholesterol to dehydroepiandrosterone.

TL;DR: Androgens and estrogens are primarily made from dehydroepiandrosterone (DHEA), which is made from cholesterol via four steps, which is regulated posttranslationally by at least three factors: the abundance of the electron-donating protein P450 oxidoreductase (POR), the presence of cytochrome b5 and the serine phosphorylation of P450c17.
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Investigations on the genetic polymorphism in the region of CYP17 gene encoding 5'-UTR in patients with polycystic ovarian syndrome.

TL;DR: It was demonstrated that the polymorphic A2 allele is no more frequent in women with PCOS than in healthy women and T→C polymorphism of CYP17 gene is not associated with steroid hormone synthesis in PCOS and is not the primary genetic defect in this disease.
Journal ArticleDOI

Genetic Studies on Polycystic Ovary Syndrome.

TL;DR: The current knowledge of the pathogenesis of PCOS is still in its infancy, and further studies using new technologies such as next-generation sequencing (NGS) shall be useful to understand more causal variants for PCOS.
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