A comprehensive study of common and rare genetic variants in spermatogenesis-related loci identifies new risk factors for idiopathic severe spermatogenic failure.

IF 8.3 Q1 OBSTETRICS & GYNECOLOGY
Human reproduction open Pub Date : 2024-11-13 eCollection Date: 2024-01-01 DOI:10.1093/hropen/hoae069
Andrea Guzmán-Jiménez, Sara González-Muñoz, Miriam Cerván-Martín, Nicolás Garrido, José A Castilla, M Carmen Gonzalvo, Ana Clavero, Marta Molina, Saturnino Luján, Samuel Santos-Ribeiro, Miguel Ángel Vilches, Andrea Espuch, Vicente Maldonado, Noelia Galiano-Gutiérrez, Esther Santamaría-López, Cristina González-Ravina, Fernando Quintana-Ferraz, Susana Gómez, David Amorós, Luis Martínez-Granados, Yanira Ortega-González, Miguel Burgos, Iris Pereira-Caetano, Ozgur Bulbul, Stefano Castellano, Massimo Romano, Elena Albani, Lluís Bassas, Susana Seixas, João Gonçalves, Alexandra M Lopes, Sara Larriba, Rogelio J Palomino-Morales, F David Carmona, Lara Bossini-Castillo
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SPGF can be due to either multifactorial causes, including both common genetic variants in multiple genes and environmental factors, or highly damaging rare variants. Next-generation sequencing methods are useful for identifying rare mutations that explain monogenic forms of SPGF. Genome-wide association studies (GWASs) have become essential approaches for deciphering the intricate genetic landscape of complex diseases, offering a cost-effective and rapid means to genotype millions of genetic variants. Novel methods have demonstrated that GWAS datasets can be used to infer rare coding variants that are causal for male infertility phenotypes. However, this approach has not been previously applied to characterize the genetic component of a whole case-control cohort.</p><p><strong>Study design size duration: </strong>We employed a hypothesis-driven approach focusing on all genetic variation identified, using a GWAS platform and subsequent genotype imputation, encompassing over 20 million polymorphisms and a total of 1571 SPGF patients and 2431 controls. Both common (minor allele frequency, MAF > 0.01) and rare (MAF < 0.01) variants were investigated within a total of 1797 loci with a reported role in spermatogenesis. This gene panel was meticulously assembled through comprehensive searches in the literature and various databases focused on male infertility genetics.</p><p><strong>Participants/materials setting methods: </strong>This study involved a European cohort using previously and newly generated data. 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引用次数: 0

Abstract

Study question: Can genome-wide genotyping data be analysed using a hypothesis-driven approach to enhance the understanding of the genetic basis of severe spermatogenic failure (SPGF) in male infertility?

Summary answer: Our findings revealed a significant association between SPGF and the SHOC1 gene and identified three novel genes (PCSK4, AP3B1, and DLK1) along with 32 potentially pathogenic rare variants in 30 genes that contribute to this condition.

What is known already: SPGF is a major cause of male infertility, often with an unknown aetiology. SPGF can be due to either multifactorial causes, including both common genetic variants in multiple genes and environmental factors, or highly damaging rare variants. Next-generation sequencing methods are useful for identifying rare mutations that explain monogenic forms of SPGF. Genome-wide association studies (GWASs) have become essential approaches for deciphering the intricate genetic landscape of complex diseases, offering a cost-effective and rapid means to genotype millions of genetic variants. Novel methods have demonstrated that GWAS datasets can be used to infer rare coding variants that are causal for male infertility phenotypes. However, this approach has not been previously applied to characterize the genetic component of a whole case-control cohort.

Study design size duration: We employed a hypothesis-driven approach focusing on all genetic variation identified, using a GWAS platform and subsequent genotype imputation, encompassing over 20 million polymorphisms and a total of 1571 SPGF patients and 2431 controls. Both common (minor allele frequency, MAF > 0.01) and rare (MAF < 0.01) variants were investigated within a total of 1797 loci with a reported role in spermatogenesis. This gene panel was meticulously assembled through comprehensive searches in the literature and various databases focused on male infertility genetics.

Participants/materials setting methods: This study involved a European cohort using previously and newly generated data. Our analysis consisted of three independent methods: (i) variant-wise association analyses using logistic regression models, (ii) gene-wise association analyses using combined multivariate and collapsing burden tests, and (iii) identification and characterisation of highly damaging rare coding variants showing homozygosity only in SPGF patients.

Main results and the role of chance: The variant-wise analyses revealed an association between SPGF and SHOC1-rs12347237 (P =4.15E-06, odds ratio = 2.66), which was likely explained by an altered binding affinity of key transcription factors in regulatory regions and the disruptive effect of coding variants within the gene. Three additional genes (PCSK4, AP3B1, and DLK1) were identified as novel relevant players in human male infertility using the gene-wise burden test approach (P <5.56E-04). Furthermore, we linked a total of 32 potentially pathogenic and recessive coding variants of the selected genes to 35 different cases.

Large scale data: Publicly available via GWAS catalog (accession number: GCST90239721).

Limitations reasons for caution: The analysis of low-frequency variants presents challenges in achieving sufficient statistical power to detect genetic associations. Consequently, independent studies with larger sample sizes are essential to replicate our results. Additionally, the specific roles of the identified variants in the pathogenic mechanisms of SPGF should be assessed through functional experiments.

Wider implications of the findings: Our findings highlight the benefit of using GWAS genotyping to screen for both common and rare variants potentially implicated in idiopathic cases of SPGF, whether due to complex or monogenic causes. The discovery of novel genetic risk factors for SPGF and the elucidation of the underlying genetic causes provide new perspectives for personalized medicine and reproductive counselling.

Study funding/competing interests: This work was supported by the Spanish Ministry of Science and Innovation through the Spanish National Plan for Scientific and Technical Research and Innovation (PID2020-120157RB-I00) and the Andalusian Government through the research projects of 'Plan Andaluz de Investigación, Desarrollo e Innovación (PAIDI 2020)' (ref. PY20_00212) and 'Proyectos de Investigación aplicada FEDER-UGR 2023' (ref. C-CTS-273-UGR23). S.G.-M. was funded by the previously mentioned projects (ref. PY20_00212 and PID2020-120157RB-I00). A.G.-J. was funded by MCIN/AEI/10.13039/501100011033 and FSE 'El FSE invierte en tu futuro' (grant ref. FPU20/02926). IPATIMUP integrates the i3S Research Unit, which is partially supported by the Portuguese Foundation for Science and Technology (FCT), financed by the European Social Funds (COMPETE-FEDER) and National Funds (projects PEstC/SAU/LA0003/2013 and POCI-01-0145-FEDER-007274). S.S. is supported by FCT funds (10.54499/DL57/2016/CP1363/CT0019), ToxOmics-Centre for Toxicogenomics and Human Health, Genetics, Oncology and Human Toxicology, and is also partially supported by the Portuguese Foundation for Science and Technology (UIDP/00009/2020 and UIDB/00009/2020). S. Larriba received support from Instituto de Salud Carlos III (grant: DTS18/00101), co-funded by FEDER funds/European Regional Development Fund (ERDF)-a way to build Europe) and from 'Generalitat de Catalunya' (grant 2021SGR052). S. Larriba is also sponsored by the 'Researchers Consolidation Program' from the SNS-Dpt. Salut Generalitat de Catalunya (Exp. CES09/020). All authors declare no conflict of interest related to this study.

对精子发生相关位点常见和罕见遗传变异的综合研究发现了特发性严重生精功能障碍的新风险因素。
研究问题:能否采用假设驱动法分析全基因组基因分型数据,以加深对男性不育症中严重生精功能障碍(SPGF)遗传基础的了解?我们的研究结果揭示了SPGF与SHOC1基因之间的显著关联,并发现了3个新基因(PCSK4、AP3B1和DLK1)以及30个基因中的32个潜在致病性罕见变异,它们都是导致这种情况的原因:SPGF是导致男性不育的一个主要原因,通常病因不明。SPGF可能是由多因素引起的,包括多个基因中的常见遗传变异和环境因素,也可能是由具有高度破坏性的罕见变异引起的。下一代测序方法有助于确定可解释单基因型 SPGF 的罕见变异。全基因组关联研究(GWAS)已成为破译复杂疾病错综复杂的遗传图谱的重要方法,为数百万基因变异的基因分型提供了一种具有成本效益的快速手段。新方法证明,GWAS 数据集可用于推断与男性不育表型有因果关系的罕见编码变异。然而,这种方法以前从未用于描述整个病例对照队列的遗传成分:我们采用了一种假设驱动的方法,利用 GWAS 平台和随后的基因型估算,重点研究已发现的所有遗传变异,其中包括超过 2000 万个多态性,共有 1571 名 SPGF 患者和 2431 名对照。共调查了 1797 个基因位点中的常见变异(小等位基因频率,MAF > 0.01)和罕见变异(MAF < 0.01),这些变异据报道在精子发生过程中发挥作用。该基因组是通过对男性不育遗传学方面的文献和各种数据库进行全面检索后精心组建的:这项研究涉及一个欧洲队列,使用了以前和新产生的数据。我们的分析包括三种独立的方法:(i) 使用逻辑回归模型进行变异关联分析;(ii) 使用多变量和折叠负荷测试进行基因关联分析;(iii) 识别仅在 SPGF 患者中出现同源变异的高损伤性罕见编码变异并确定其特征:变异分析表明,SPGF 与 SHOC1-rs12347237 存在关联(P = 4.15E-06,几率 = 2.66),其原因可能是关键转录因子在调控区域的结合亲和力发生了改变,以及基因内编码变异的破坏作用。通过基因累加检验法,我们还发现另外三个基因(PCSK4、AP3B1 和 DLK1)与人类男性不育症有新的关联(P 5.56E-04)。此外,我们还将所选基因的 32 个潜在致病性和隐性编码变异与 35 个不同病例联系起来:大规模数据:可通过 GWAS 目录公开获取(登录号:GCST90239721):对低频变异的分析在获得足够的统计能力以检测遗传关联方面存在挑战。因此,要复制我们的结果,必须进行样本量更大的独立研究。此外,应通过功能实验来评估已鉴定变异在 SPGF 致病机制中的具体作用:我们的研究结果凸显了利用 GWAS 基因分型筛选可能与特发性 SPGF 病例有关的常见和罕见变异的益处,无论这些病例是由复杂病因还是单基因病因引起的。发现SPGF的新型遗传风险因素并阐明其潜在的遗传原因,为个性化医疗和生殖咨询提供了新的视角:这项工作得到了西班牙科学与创新部通过西班牙国家科技研究与创新计划(PID2020-120157RB-I00)以及安达卢西亚政府通过 "Plan Andaluz de Investigación, Desarrollo e Innovación (PAIDI 2020)"(编号PY20_00212)和 "Proyectos de Investigación aplicada FEDER-UGR 2023"(编号C-CTS-273-UGR23)研究项目提供的支持。S.G.-M.获得了上述项目(参考编号PY20_00212和PID2020-120157RB-I00)的资助。A.G.-J.得到了 MCIN/AEI/10.13039/501100011033 和 FSE "El FSE invierte en tu futuro"(资助编号:FPU20/02926)的资助。IPATIMUP 整合了 i3S 研究小组,该小组由葡萄牙科技基金会(FCT)提供部分支持,由欧洲社会基金(COMPETE-FEDER)和国家基金(项目 PEstC/SAU/LA0003/2013 和 POCI-01-0145-FEDER-007274)资助。S.S. 由 FCT 基金资助(10. 54499/DL57/2016/CP1363/CT0019)、ToxOmics-毒物基因组学和人类健康、遗传学、肿瘤学和人类毒理学中心的支持,并得到葡萄牙科技基金会(UIDP/00009/2020 和 UIDB/00009/2020)的部分支持。S. Larriba 得到了卡洛斯三世健康研究所(资助:DTS18/00101)(由 FEDER 基金/欧洲地区发展基金(ERDF)--建设欧洲的一种方式共同资助)和加泰罗尼亚自治区(Generalitat de Catalunya)(资助:2021SGR052)的支持。S. Larriba 还得到了 SNS-Dpt.CES09/020)。所有作者声明与本研究无利益冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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