Mutations Causing Familial Biparental Hydatidiform Mole Implicate C6orf221 as a Possible Regulator of Genomic Imprinting in the Human Oocyte
Author(s) -
David Parry,
Clare V. Logan,
Bruce E. Hayward,
Michael Shires,
Hanène Landolsi,
Christine P. Diggle,
Ian Carr,
Cécile Rittore,
Isabelle Touitou,
Laurent Philibert,
Rosemary A. Fisher,
Masoumeh Fallahian,
John Huntriss,
Helen M. Picton,
Saghira Malik,
Graham R. Taylor,
Colin A. Johnson,
David T. Bonthron,
Eamonn Sheridan
Publication year - 2011
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2011.08.002
Subject(s) - genomic imprinting , oocyte , imprinting (psychology) , regulator , biology , genetics , gene , gene expression , embryo , dna methylation
Familial biparental hydatidiform mole (FBHM) is the only known pure maternal-effect recessive inherited disorder in humans. Affected women, although developmentally normal themselves, suffer repeated pregnancy loss because of the development of the conceptus into a complete hydatidiform mole in which extraembryonic trophoblastic tissue develops but the embryo itself suffers early demise. This developmental phenotype results from a genome-wide failure to correctly specify or maintain a maternal epigenotype at imprinted loci. Most cases of FBHM result from mutations of NLRP7, but genetic heterogeneity has been demonstrated. Here, we report biallelic mutations of C6orf221 in three families with FBHM. The previously described biological properties of their respective gene families suggest that NLRP7 and C6orf221 may interact as components of an oocyte complex that is directly or indirectly required for determination of epigenetic status on the oocyte genome.
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