Literature DB >> 11391793

Smallest region of overlapping deletion in 1p36 in human neuroblastoma: a 1 Mbp cosmid and PAC contig.

A Bauer1, L Savelyeva, A Claas, C Praml, F Berthold, M Schwab.   

Abstract

In human neuroblastomas, the distal portion of 1p is frequently deleted, as if one or more tumor suppressor genes from this region were involved in neuroblastoma tumorigenesis. Earlier studies had identified a smallest region of overlapping deletion (SRO) spanning approximately 23 cM between the most distally retained D1S80 and by the proximally retained D1S244. In pursuit of generating a refined delineation of the minimally deleted region, we have analyzed 49 neuroblastomas of different stages for loss of heterozygosity (LOH) from 1pter to 1p35 by employing 26 simple sequence length polymorphisms. Fifteen of the 49 tumors (31%) had LOH; homozygous deletion was not detected. Seven tumors had LOH at all informative loci analyzed, and eight tumors showed a terminal or an interstitial allelic loss of 1p. One small terminal and one interstitial deletion defined a new 1.7 cM SRO, approximately 1 Mbp in physical length, deleted in all tumors between the retained D1S2731 (distal) and D1S2666 (proximal). To determine the genomic complexity of the deleted region shared among tumors, we assembled a physical map of the I Mbp SRO consisting predominantly of bacteriophage P1-derived artificial chromosome (PAC) clones. A total of 55 sequence-tagged site (STS) markers (23 published STSs and short tandem repeats and 32 newly identified STSs from the insert ends of PACs and cosmids) were assembled in a contig, resulting in a sequence-ready physical map with approximately one STS per 20 Kbp. Twelve genes (41BB, CD30, DFFA, DJ1, DR3, FRAP, HKR3, MASP2, MTHFR, RIZ, TNR2, TP73) previously mapped to 1p36 are localized outside this SRO. On the basis of this study, they would be excluded as candidate genes for neuroblastoma tumorigenesis. Ten expressed sequence tags were integrated in the contig, of which five are located outside the SRO. The other five from within the SRO may provide an entrance point for the cloning of candidate genes for neuroblastoma. Copyright 2001 Wiley-Liss, Inc.

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Year:  2001        PMID: 11391793     DOI: 10.1002/gcc.1139

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   5.006


  17 in total

Review 1.  The role of genetic and epigenetic alterations in neuroblastoma disease pathogenesis.

Authors:  Raquel Domingo-Fernandez; Karen Watters; Olga Piskareva; Raymond L Stallings; Isabella Bray
Journal:  Pediatr Surg Int       Date:  2012-12-29       Impact factor: 1.827

2.  Human Kruppel-related 3 (HKR3) is a novel transcription activator of alternate reading frame (ARF) gene.

Authors:  Jae-Hyeon Yoon; Won-Il Choi; Bu-Nam Jeon; Dong-In Koh; Min-Kyeong Kim; Myung-Hwa Kim; Jungho Kim; Sujin Susanne Hur; Kyung-Sup Kim; Man-Wook Hur
Journal:  J Biol Chem       Date:  2014-01-01       Impact factor: 5.157

3.  Mechanisms of CHD5 Inactivation in neuroblastomas.

Authors:  Hiroshi Koyama; Tiangang Zhuang; Jennifer E Light; Venkatadri Kolla; Mayumi Higashi; Patrick W McGrady; Wendy B London; Garrett M Brodeur
Journal:  Clin Cancer Res       Date:  2012-01-31       Impact factor: 12.531

4.  Genomic organization and expression profile of the human and mouse WAVE gene family.

Authors:  Khalid Sossey-Alaoui; Karen Head; Norma Nowak; John K Cowell
Journal:  Mamm Genome       Date:  2003-05       Impact factor: 2.957

5.  KIF1Bbeta functions as a haploinsufficient tumor suppressor gene mapped to chromosome 1p36.2 by inducing apoptotic cell death.

Authors:  Arasambattu K Munirajan; Kiyohiro Ando; Akira Mukai; Masato Takahashi; Yusuke Suenaga; Miki Ohira; Tadayuki Koda; Toru Hirota; Toshinori Ozaki; Akira Nakagawara
Journal:  J Biol Chem       Date:  2008-07-09       Impact factor: 5.157

Review 6.  Molecular and genetic bases of neuroblastoma.

Authors:  Takehiko Kamijo; Akira Nakagawara
Journal:  Int J Clin Oncol       Date:  2012-05-16       Impact factor: 3.402

7.  The emerging molecular pathogenesis of neuroblastoma: implications for improved risk assessment and targeted therapy.

Authors:  Nadine Van Roy; Katleen De Preter; Jasmien Hoebeeck; Tom Van Maerken; Filip Pattyn; Pieter Mestdagh; Joëlle Vermeulen; Jo Vandesompele; Frank Speleman
Journal:  Genome Med       Date:  2009-07-27       Impact factor: 11.117

8.  A novel 1p36.2 located gene, APITD1, with tumour-suppressive properties and a putative p53-binding domain, shows low expression in neuroblastoma tumours.

Authors:  C Krona; K Ejeskär; H Carén; F Abel; R-M Sjöberg; T Martinsson
Journal:  Br J Cancer       Date:  2004-09-13       Impact factor: 7.640

9.  FISH analysis of hematological neoplasias with 1p36 rearrangements allows the definition of a cluster of 2.5 Mb included in the minimal region deleted in 1p36 deletion syndrome.

Authors:  Idoya Lahortiga; Iria Vázquez; Elena Belloni; José P Román; Patrizia Gasparini; Francisco J Novo; Isabel Zudaire; Pier G Pelicci; Jesús M Hernández; María J Calasanz; María D Odero
Journal:  Hum Genet       Date:  2005-03-03       Impact factor: 4.132

10.  Delineating the cytogenomic and epigenomic landscapes of glioma stem cell lines.

Authors:  Simona Baronchelli; Angela Bentivegna; Serena Redaelli; Gabriele Riva; Valentina Butta; Laura Paoletta; Giuseppe Isimbaldi; Monica Miozzo; Silvia Tabano; Antonio Daga; Daniela Marubbi; Monica Cattaneo; Ida Biunno; Leda Dalprà
Journal:  PLoS One       Date:  2013-02-28       Impact factor: 3.240

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