Literature DB >> 19755486

On the origin of the maternal age effect in trisomy 21 Down syndrome: the Oocyte Mosaicism Selection model.

Maj A Hultén1, Suketu Patel, Jon Jonasson, Erik Iwarsson.   

Abstract

We have recently documented that trisomy 21 mosaicism is common in human foetal ovaries. On the basis of this observation we propose that the maternal age effect in Down syndrome (DS) is caused by the differential behaviour of trisomy 21 in relation to disomy 21 oocytes during development from foetal life until ovulation in adulthood. In particular, we suggest that trisomy 21 oocytes, lagging behind those that are disomic, may escape the timed pruning of the seven million in foetal life to the 300-400 finally selected for ovulation. The net effect of this preferential elimination will be an accumulation of trisomy 21 oocytes in the ovarian reserve of older women. We here highlight the implications of this Oocyte Mosaicism Selection (OMS) model with respect to the prevalent view that the maternal age effect is complex, dependent on many different biological and environmental factors. We examine conclusions drawn from recent large-scale studies in families, tracing DNA markers along the length of chromosome 21q between parents and DS children, in comparison to the OMS model. We conclude that these family linkage data are equally compatible with the maternal age effect originating from the accumulation of trisomy 21 oocytes with advancing maternal age. One relatively straightforward way to get to grips with what is actually going on in this regard would be to compare incidence of trisomy 21 oocytes (and their pairing configurations) in foetal ovaries with that in oocytes at the meiosis I stage from adult women.

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Year:  2010        PMID: 19755486     DOI: 10.1530/REP-09-0088

Source DB:  PubMed          Journal:  Reproduction        ISSN: 1470-1626            Impact factor:   3.906


  18 in total

Review 1.  Meiotic origins of maternal age-related aneuploidy.

Authors:  Teresa Chiang; Richard M Schultz; Michael A Lampson
Journal:  Biol Reprod       Date:  2012-01-10       Impact factor: 4.285

2.  On the paternal origin of trisomy 21 Down syndrome.

Authors:  Maj A Hultén; Suketu D Patel; Magnus Westgren; Nikos Papadogiannakis; Anna Maria Jonsson; Jon Jonasson; Erik Iwarsson
Journal:  Mol Cytogenet       Date:  2010-02-23       Impact factor: 2.009

3.  Multiple meiotic errors caused by predivision of chromatids in women of advanced maternal age undergoing in vitro fertilisation.

Authors:  Alan H Handyside; Markus Montag; M Cristina Magli; Sjoerd Repping; Joyce Harper; Andreas Schmutzler; Katerina Vesela; Luca Gianaroli; Joep Geraedts
Journal:  Eur J Hum Genet       Date:  2012-02-08       Impact factor: 4.246

4.  Germline mosaicism does not explain the maternal age effect on trisomy.

Authors:  Ross Rowsey; Anna Kashevarova; Brenda Murdoch; Carrie Dickenson; Tracey Woodruff; Edith Cheng; Patricia Hunt; Terry Hassold
Journal:  Am J Med Genet A       Date:  2013-08-15       Impact factor: 2.802

5.  Down syndrome and microRNAs.

Authors:  Aldina Brás; António S Rodrigues; Bruno Gomes; José Rueff
Journal:  Biomed Rep       Date:  2017-11-17

6.  Polymorphism C1420T of Serine hydroxymethyltransferase gene on maternal risk for Down syndrome.

Authors:  Gustavo Henrique Marucci; Bruna Lancia Zampieri; Joice Matos Biselli; Sendi Valentin; Eny Maria Goloni Bertollo; Marcos Nogueira Eberlin; Renato Haddad; Maria Francesca Riccio; Hélio Vannucchi; Valdemir Melechco Carvalho; Erika Cristina Pavarino
Journal:  Mol Biol Rep       Date:  2011-06-18       Impact factor: 2.316

7.  Polymorphisms in folate-metabolizing genes, chromosome damage, and risk of Down syndrome in Italian women: identification of key factors using artificial neural networks.

Authors:  Fabio Coppedè; Enzo Grossi; Francesca Migheli; Lucia Migliore
Journal:  BMC Med Genomics       Date:  2010-09-24       Impact factor: 3.063

8.  Telomere length is associated with types of chromosome 21 nondisjunction: a new insight into the maternal age effect on Down syndrome birth.

Authors:  Sujoy Ghosh; Eleanor Feingold; Sumita Chakraborty; Subrata Kumar Dey
Journal:  Hum Genet       Date:  2010-04       Impact factor: 4.132

9.  Non-meiotic chromosome instability in human immature oocytes.

Authors:  Gemma Daina; Laia Ramos; Mariona Rius; Albert Obradors; Javier Del Rey; Magda Giralt; Mercedes Campillo; Esther Velilla; Aïda Pujol; Olga Martinez-Pasarell; Jordi Benet; Joaquima Navarro
Journal:  Eur J Hum Genet       Date:  2013-05-22       Impact factor: 4.246

10.  Germinal and Somatic Trisomy 21 Mosaicism: How Common is it, What are the Implications for Individual Carriers and How Does it Come About?

Authors:  Maj A Hultén; Jon Jonasson; Ann Nordgren; Erik Iwarsson
Journal:  Curr Genomics       Date:  2010-09       Impact factor: 2.236

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