Literature DB >> 35771717

Characterization of unusual iAMP21 B-lymphoblastic leukemia (iAMP21-ALL) from the Mayo Clinic and Children's Oncology Group.

Alaa Koleilat1, James B Smadbeck2, Cinthya J Zepeda-Mendoza3, Cynthia M Williamson1, Beth A Pitel1, Crystal L Golden1, Xinjie Xu1,4, Patricia T Greipp1,4, Rhett P Ketterling1,4, Nicole L Hoppman1, Jess F Peterson1,4, Christine J Harrison5, Yassmine M N Akkari6, Karen D Tsuchiya7, Mary Shago8, Linda B Baughn1.   

Abstract

Acute lymphoblastic leukemia (B-ALL) with intrachromosomal amplification of chromosome 21 (iAMP21-ALL) represents a recurrent high-risk cytogenetic abnormality and accurate identification is critical for appropriate clinical management. Identification of iAMP21-ALL has historically relied on fluorescence in situ hybridization (FISH) using a RUNX1 probe. Current classification requires ≥ five copies of RUNX1 per cell and ≥ three additional copies of RUNX1 on a single abnormal iAMP21-chromosome. We sought to evaluate the performance of the RUNX1 probe in the identification of iAMP21-ALL. This study was a retrospective evaluation of iAMP21-ALL in the Mayo Clinic and Children's Oncology Group cohorts. Of 207 cases of iAMP21-ALL, 188 (91%) were classified as "typical" iAMP21-ALL, while 19 (9%) cases were classified as "unusual" iAMP21-ALL. The "unusual" iAMP21 cases did not meet the current definition of iAMP21 by FISH but were confirmed to have iAMP21 by chromosomal microarray. Half of the "unusual" iAMP21-ALL cases had less than five RUNX1 signals, while the remainder had ≥ five RUNX1 signals with some located apart from the abnormal iAMP21-chromosome. Nine percent of iAMP21-ALL cases fail to meet the FISH definition of iAMP21-ALL demonstrating that laboratories are at risk of misidentification of iAMP21-ALL when relying only on the RUNX1 FISH probe. Incorporation of chromosomal microarray testing circumvents these risks.
© 2022 The Authors. Genes, Chromosomes and Cancer published by Wiley Periodicals LLC.

Entities:  

Keywords:  zzm321990B-ALLzzm321990; zzm321990FISHzzm321990; zzm321990RUNX1zzm321990; zzm321990iAMP21-ALLzzm321990; cytogenetics

Mesh:

Substances:

Year:  2022        PMID: 35771717      PMCID: PMC9549522          DOI: 10.1002/gcc.23084

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   4.263


  28 in total

1.  Circos: an information aesthetic for comparative genomics.

Authors:  Martin Krzywinski; Jacqueline Schein; Inanç Birol; Joseph Connors; Randy Gascoyne; Doug Horsman; Steven J Jones; Marco A Marra
Journal:  Genome Res       Date:  2009-06-18       Impact factor: 9.043

2.  Analysis of a breakpoint cluster reveals insight into the mechanism of intrachromosomal amplification in a lymphoid malignancy.

Authors:  Paul B Sinclair; Helen Parker; Qian An; Vikki Rand; Hannah Ensor; Christine J Harrison; Jonathan C Strefford
Journal:  Hum Mol Genet       Date:  2011-04-12       Impact factor: 6.150

3.  Is intrachromosomal amplification of chromosome 21 (iAMP21) always intrachromosomal?

Authors:  Karen D Tsuchiya; Billy Davis; Rebecca A Gardner
Journal:  Cancer Genet       Date:  2017-08-31

4.  Genome U-Plot: a whole genome visualization.

Authors:  Athanasios Gaitatzes; Sarah H Johnson; James B Smadbeck; George Vasmatzis
Journal:  Bioinformatics       Date:  2018-05-15       Impact factor: 6.937

5.  SVAtools for junction detection of genome-wide chromosomal rearrangements by mate-pair sequencing (MPseq).

Authors:  Sarah H Johnson; James B Smadbeck; Stephanie A Smoley; Athanasios Gaitatzes; Stephen J Murphy; Faye R Harris; Travis M Drucker; Roman M Zenka; Beth A Pitel; Ross A Rowsey; Nicole L Hoppman; Umut Aypar; William R Sukov; Robert B Jenkins; Andrew L Feldman; Hutton M Kearney; George Vasmatzis
Journal:  Cancer Genet       Date:  2017-12-02

6.  Intrachromosomal amplification of chromosome 21 (iAMP21) may arise from a breakage-fusion-bridge cycle.

Authors:  Hazel M Robinson; Christine J Harrison; Anthony V Moorman; Ilse Chudoba; Jonathan C Strefford
Journal:  Genes Chromosomes Cancer       Date:  2007-04       Impact factor: 5.006

7.  Genomic characterization implicates iAMP21 as a likely primary genetic event in childhood B-cell precursor acute lymphoblastic leukemia.

Authors:  Vikki Rand; Helen Parker; Lisa J Russell; Claire Schwab; Hannah Ensor; Julie Irving; Lisa Jones; Dino Masic; Lynne Minto; Heather Morrison; Sarra Ryan; Hazel Robinson; Paul Sinclair; Anthony V Moorman; Jonathan C Strefford; Christine J Harrison
Journal:  Blood       Date:  2011-04-28       Impact factor: 22.113

Review 8.  Evidence-based review of genomic aberrations in B-lymphoblastic leukemia/lymphoma: Report from the cancer genomics consortium working group for lymphoblastic leukemia.

Authors:  Yassmine M N Akkari; Helene Bruyere; R Tanner Hagelstrom; Rashmi Kanagal-Shamanna; Jie Liu; Minjie Luo; Fady M Mikhail; Beth A Pitel; Gordana Raca; Mary Shago; Lina Shao; Lisa R Smith; Teresa A Smolarek; Ashwini Yenamandra; Linda B Baughn
Journal:  Cancer Genet       Date:  2020-03-21

9.  Prognosis of children with acute lymphoblastic leukemia (ALL) and intrachromosomal amplification of chromosome 21 (iAMP21).

Authors:  Anthony V Moorman; Susan M Richards; Hazel M Robinson; Jon C Strefford; Brenda E S Gibson; Sally E Kinsey; Tim O B Eden; Ajay J Vora; Christopher D Mitchell; Christine J Harrison
Journal:  Blood       Date:  2006-11-09       Impact factor: 22.113

10.  Advances in B-cell Precursor Acute Lymphoblastic Leukemia Genomics.

Authors:  Claire Schwab; Christine J Harrison
Journal:  Hemasphere       Date:  2018-06-20
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