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CCDC201 中的无义变异纯合导致原发性卵巢功能不全。

Homozygosity for a stop-gain variant in CCDC201 causes primary ovarian insufficiency.

机构信息

deCODE genetics/Amgen, Inc., Reykjavik, Iceland.

Department of Anthropology, University of Iceland, Reykjavik, Iceland.

出版信息

Nat Genet. 2024 Sep;56(9):1804-1810. doi: 10.1038/s41588-024-01885-6. Epub 2024 Aug 27.

Abstract

Age at menopause (AOM) has a substantial impact on fertility and disease risk. While many loci with variants that associate with AOM have been identified through genome-wide association studies (GWAS) under an additive model, other genetic models are rarely considered. Here through GWAS meta-analysis under the recessive model of 174,329 postmenopausal women from Iceland, Denmark, the United Kingdom (UK; UK Biobank) and Norway, we study low-frequency variants with a large effect on AOM. We discovered that women homozygous for the stop-gain variant rs117316434 (A) in CCDC201 (p.(Arg162Ter), minor allele frequency ~1%) reached menopause 9 years earlier than other women (P = 1.3 × 10). The genotype is present in one in 10,000 northern European women and leads to primary ovarian insufficiency in close to half of them. Consequently, homozygotes have fewer children, and the age at last childbirth is 5 years earlier (P = 3.8 × 10). The CCDC201 gene was only found in humans in 2022 and is highly expressed in oocytes. Homozygosity for CCDC201 loss-of-function has a substantial impact on female reproductive health, and homozygotes would benefit from reproductive counseling and treatment for symptoms of early menopause.

摘要

绝经年龄 (AOM) 对生育能力和疾病风险有重大影响。虽然通过全基因组关联研究 (GWAS) 在加性模型下已经确定了许多与 AOM 相关的变体,但很少考虑其他遗传模型。在这里,通过对来自冰岛、丹麦、英国(英国生物银行)和挪威的 174329 名绝经后女性进行隐性模型下的 GWAS 荟萃分析,我们研究了对 AOM 有较大影响的低频变异。我们发现,CCDC201 中纯合终止增益变体 rs117316434(A)的女性(p.(Arg162Ter),次要等位基因频率约为 1%)比其他女性早 9 年绝经(P = 1.3×10)。这种基因型在一万名北欧女性中存在一例,其中近一半会导致原发性卵巢功能不全。因此,纯合子的孩子较少,最后一次分娩的年龄提前 5 年(P = 3.8×10)。CCDC201 基因直到 2022 年才在人类中被发现,并且在卵母细胞中高度表达。CCDC201 失活的纯合子对女性生殖健康有重大影响,纯合子将受益于生殖咨询和治疗早期绝经的症状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d64/11387189/7d060c07f34f/41588_2024_1885_Fig1_HTML.jpg

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