Literature DB >> 17177177

Loss of imprinting and cancer.

P Jelinic1, P Shaw.   

Abstract

Imprinting is defined as the parental allele-specific expression of a very limited set of genes (about 50-80). This regulation depends upon an epigenetic marking of parental alleles during gametogenesis. Monoallelic expression ensures that the levels of the proteins encoded by imprinted genes, important factors of embryonic growth, placental growth or adult metabolism, are assured. Without precise control of their expression, developmental abnormalities result, as is shown by a number of hereditary over-growth syndromes, including Beckwith-Wiedemann syndrome. The regulation of imprinted genes is largely dependent on methylation marks, which are laid down during embryological development of germ cells. Once in place, the methylation status of precise chromosomal regions, Imprinting Control Regions (ICRs), is read by either of two mechanisms, chromatin barrier formation or untranslated RNAs, thereby ensuring that only the maternal or paternal allele is expressed. Each imprinted gene is classified as maternal or paternal according to the expressed allele. The stability of the marked regions in somatic cells is maintained through each cellular replication by a methylation enzyme complex containing Dnmt1. Although the major reading mechanisms of imprinted status are known, chromatin boundary formation by CTCF and untranslated RNAs, the molecules elaborating the initial ICR methylation, are just being uncovered. Mis-regulation of imprinted gene expression (loss of imprinting [LOI]) is seen frequently and precociously in a large variety of human tumours, making LOI a potentially valuable tool for both diagnosis and treatment. In fact, LOI is presently considered the most abundant and most precocious alteration in cancer. The present review proposes a mechanism responsible for LOI, as well as its eventual value in tumour diagnosis and prognosis. Copyright 2006 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.

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Year:  2007        PMID: 17177177     DOI: 10.1002/path.2116

Source DB:  PubMed          Journal:  J Pathol        ISSN: 0022-3417            Impact factor:   7.996


  85 in total

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2.  DNA methyl transferase 1: regulatory mechanisms and implications in health and disease.

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3.  Non-integrating episomal plasmid-based reprogramming of human amniotic fluid stem cells into induced pluripotent stem cells in chemically defined conditions.

Authors:  Jaroslav Slamecka; Lilia Salimova; Steven McClellan; Mathieu van Kelle; Debora Kehl; Javier Laurini; Paolo Cinelli; Laurie Owen; Simon P Hoerstrup; Benedikt Weber
Journal:  Cell Cycle       Date:  2016       Impact factor: 4.534

4.  Gene-specific vulnerability to imprinting variability in human embryonic stem cell lines.

Authors:  Kee-Pyo Kim; Alexandra Thurston; Christine Mummery; Dorien Ward-van Oostwaard; Helen Priddle; Cinzia Allegrucci; Chris Denning; Lorraine Young
Journal:  Genome Res       Date:  2007-11-07       Impact factor: 9.043

5.  Spatial allelic imbalance of BCL2 genes and chromosome 18 territories in nonneoplastic and neoplastic cervical squamous epithelium.

Authors:  Thorsten Wiech; Stefan Stein; Victoria Lachenmaier; Eberhard Schmitt; Jutta Schwarz-Finsterle; Elisabeth Wiech; Georg Hildenbrand; Martin Werner; Michael Hausmann
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6.  Uniparentalism in sporadic colorectal cancer is independent of imprint status, and coordinate for chromosomes 14 and 18.

Authors:  Huferesh K Darbary; Smitha S Dutt; Sheila J Sait; Norma J Nowak; Roy E Heinaman; Daniel L Stoler; Garth R Anderson
Journal:  Cancer Genet Cytogenet       Date:  2009-03

7.  In vivo and in vitro differentiation of uniparental embryonic stem cells into hematopoietic and neural cell types.

Authors:  Sigrid Eckardt; Timo C Dinger; Satoshi Kurosaka; N Adrian Leu; Albrecht M Müller; K John McLaughlin
Journal:  Organogenesis       Date:  2008-01       Impact factor: 2.500

Review 8.  DNA hypomethylation in the origin and pathogenesis of human diseases.

Authors:  Igor P Pogribny; Frederick A Beland
Journal:  Cell Mol Life Sci       Date:  2009-03-27       Impact factor: 9.261

9.  Extreme methylation values of imprinted genes in human abortions and stillbirths.

Authors:  Galyna Pliushch; Eberhard Schneider; Daniela Weise; Nady El Hajj; Achim Tresch; Larissa Seidmann; Wiltrud Coerdt; Annette M Müller; Ulrich Zechner; Thomas Haaf
Journal:  Am J Pathol       Date:  2010-01-21       Impact factor: 4.307

10.  The stem cell transcription factor ZFP57 induces IGF2 expression to promote anchorage-independent growth in cancer cells.

Authors:  Y Tada; Y Yamaguchi; T Kinjo; X Song; T Akagi; H Takamura; T Ohta; T Yokota; H Koide
Journal:  Oncogene       Date:  2014-01-27       Impact factor: 9.867

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