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Defects in meiosis I contribute to the genesis of androgenetic hydatidiform moles.

Authors :
Rezaei M
Liang M
Yalcin Z
Martin JH
Kazemi P
Bareke E
Ge ZJ
Fardaei M
Benadiva C
Hemida R
Hassan A
Maher GJ
Abdalla E
Buckett W
Bolze PA
Sandhu I
Duman O
Agrawal S
Qian J
Vallian Broojeni J
Bhati L
Miron P
Allias F
Selim A
Fisher RA
Seckl MJ
Sauthier P
Touitou I
Tan SL
Majewski J
Taketo T
Slim R
Source :
The Journal of clinical investigation [J Clin Invest] 2024 Nov 15; Vol. 134 (22). Date of Electronic Publication: 2024 Nov 15.
Publication Year :
2024

Abstract

To identify novel genes responsible for recurrent hydatidiform moles (HMs), we performed exome sequencing on 75 unrelated patients who were negative for mutations in the known genes. We identified biallelic deleterious variants in 6 genes, FOXL2, MAJIN, KASH5, SYCP2, MEIOB, and HFM1, in patients with androgenetic HMs, including a familial case of 3 affected members. Five of these genes are essential for meiosis I, and their deficiencies lead to premature ovarian insufficiency. Advanced maternal age is the strongest risk factor for sporadic androgenetic HM, which affects 1 in every 600 pregnancies. We studied Hfm1-/- female mice and found that these mice lost all their oocytes before puberty but retained some at younger ages. Oocytes from Hfm1-/- mice initiated meiotic maturation and extruded the first polar bodies in culture; however, their meiotic spindles were often positioned parallel, instead of perpendicular, to the ooplasmic membrane at telophase I, and some oocytes extruded the entire spindle with all the chromosomes into the polar bodies at metaphase II, a mechanism we previously reported in Mei1-/- oocytes. The occurrence of a common mechanism in two mouse models argues in favor of its plausibility at the origin of androgenetic HM formation in humans.

Details

Language :
English
ISSN :
1558-8238
Volume :
134
Issue :
22
Database :
MEDLINE
Journal :
The Journal of clinical investigation
Publication Type :
Academic Journal
Accession number :
39545410
Full Text :
https://doi.org/10.1172/JCI170669