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多囊卵巢综合征和乳腺癌的共享遗传景观:在 ER+乳腺癌上趋同,但不在 ER-乳腺癌上趋同。

The shared genetic landscape of polycystic ovary syndrome and breast cancer: convergence on ER + breast cancer but not ER- breast cancer.

机构信息

Department of First Clinical Medicine, Shanxi Medical University, Taiyuan, China.

Department of Second Clinical Medicine, Shanxi Medical University, Taiyuan, China.

出版信息

Breast Cancer Res. 2024 Nov 25;26(1):161. doi: 10.1186/s13058-024-01923-5.

Abstract

BACKGROUND

The clinically high comorbidity between polycystic ovary syndrome (PCOS) and breast cancer (BC) has been extensively reported. However, limited knowledge exists regarding their shared genetic basis and underlying mechanisms.

METHOD

Leveraging summary statistics from the largest genome-wide association studies (GWASs) to date, we conducted a comprehensive genome-wide cross-trait analysis of PCOS and BC. A variety of genetic statistical methods were employed to uncover potential shared genetic causes.

RESULTS

Our analysis revealed genetic overlap between the three trait pairs. After partitioning the genome into 2,495 independent regions, we identified two loci, chr8: 75,011,700-76,295,483 and chr17: 6,305,079-7,264,458, with significant localized genetic correlations. Pleiotropic analysis under a composite null hypothesis identified 1,183 significant pleiotropic single nucleotide polymorphisms (SNPs) across three trait pairs. FUMA mapped 26 pleiotropic loci, with regions 16q12.2 and 6q25.1 duplicated across all three trait pairs, while COLOC detected three loci with colocalization evidence. Gene-based analysis identified 23 unique candidate pleiotropic genes, including the FTO shared by all trait pairs, as well as SER1, RALB, and others in two trait pairs. Pathway enrichment analysis further highlighted key biological pathways, primarily involving the significant biological pathways were the metabolism of regulation of autophagy, regulation of cellular catabolic process, and positive regulation of catabolic process. Latent Heritable Confounder Mendelian randomization (LHC-MR) supported a positive causal relationship between PCOS and both BCALL and ERPBC but not with ERNBC.

CONCLUSION

In conclusion, our genome-wide cross-trait analysis identified a shared genetic basis between PCOS and BC, specific identical genetic mechanisms and causality between PCOS and various BC subtypes, which could better explains the genetics of the co-morbidity of PCOS and ERPBC rather than PCOS and ERNBC. These findings provide new insights into the biological mechanisms underlying the co-morbidity of these two complex diseases, which have important implications for clinical disease intervention, treatment, and improved prognosis.

摘要

背景

多囊卵巢综合征(PCOS)和乳腺癌(BC)之间存在较高的临床共病性,这已得到广泛报道。然而,对于它们共同的遗传基础和潜在机制,我们的了解仍然有限。

方法

利用迄今为止最大的全基因组关联研究(GWAS)的汇总统计数据,我们对 PCOS 和 BC 进行了全面的全基因组跨性状分析。采用多种遗传统计方法来揭示潜在的共同遗传原因。

结果

我们的分析揭示了这三个性状对之间存在遗传重叠。在将基因组划分为 2495 个独立区域后,我们确定了两个位点,chr8:75,011,700-76,295,483 和 chr17:6,305,079-7,264,458,具有显著的局部遗传相关性。在复合零假设下的多效性分析鉴定出三个性状对之间存在 1183 个显著的多效性单核苷酸多态性(SNP)。FUMA 映射到 26 个多效性位点,其中 16q12.2 和 6q25.1 区域在所有三个性状对中均重复出现,而 COLOC 检测到三个具有共定位证据的位点。基于基因的分析确定了 23 个独特的候选多效性基因,包括所有性状对共享的 FTO,以及两个性状对中的 SER1、RALB 和其他基因。通路富集分析进一步突出了关键的生物学途径,主要涉及自噬调节、细胞分解代谢过程调节和分解代谢过程正调节等显著的生物学途径。潜在可遗传混杂因素孟德尔随机化(LHC-MR)支持 PCOS 与 BCALL 和 ERPBC 之间存在正因果关系,但与 ERNBC 无关。

结论

总之,我们的全基因组跨性状分析确定了 PCOS 和 BC 之间存在共同的遗传基础,特定的相同遗传机制以及 PCOS 和各种 BC 亚型之间的因果关系,这可以更好地解释 PCOS 和 ERPBC 共病的遗传基础,而不是 PCOS 和 ERNBC。这些发现为这两种复杂疾病共病的生物学机制提供了新的见解,对临床疾病干预、治疗和改善预后具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba86/11587662/c209dd6ee945/13058_2024_1923_Fig1_HTML.jpg

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