Detection and Characterization of BCR-ABL Transcripts in Bangladeshi CML Patients by Cost Effective RT-PCR

Authors

  • Md. Shahjalal Soad University of Dhaka
  • Khadiza Akhter University of Dhaka
  • Hossain Uddin Shekhar University of Dhaka

DOI:

https://doi.org/10.18034/abcjar.v5i2.64

Keywords:

Chronic myelogenous leukemia, Philadelphia chromosome, Real-time PCR, Conventional PCR

Abstract

Philadelphia (Ph) chromosome or the BCR-ABL fusion gene is used to diagnose, determine treatment strategy of chronic myelogenic leukemia (CML) and acute lymphoblastic leukemia (ALL). The fusion gene transcript may vary depending on the reciprocal translocation between chromosome 9 and 22.  Hence, identification and characterization of the BCR-ABL transcripts are important for the treatment and management of leukemia patients. In this study, a primer set and clinical molecular diagnosis assay were established to identify the BCR-ABL transcripts by conventional polymerase chain reaction (PCR). A parallel analysis was done for quantitative real-time polymerase chain reaction (Q-PCR) and conventional PCR. This study is based on reverse transcriptase PCR (RT-PCR) of 87 CML patients’ RNA to generate total cDNAs and the selection of the BCR-ABL transcripts by conventional polymerase chain reaction using specific primer set. A BCR primer BCR-e12: GCAGAGTGGAGGGAGAACAT and a reverse ABL primer ABL-a3: GCTTCACACCATTCCCCATT was established to select three different Philadelphia major transcripts (b3a2, b2a2 and b3a3). Sixty-one Philadelphia positive samples (35 b3a2, 22 b2a2 and 4 b3a3 fragments) were detected out of 87 CML patients. Q-RT-PCR was then performed, and ten discrepancies were found in the study. Four samples found positive in conventional PCR resulted negative in Q-PCR and other six samples (positive in Q-PCR) gave the negative result in conventional PCR. Though Q-PCR is quantitative and highly specific, it is expensive and can’t characterize BCR-ABL fragments. On the other hand, conventional PCR is less reliable but is inexpensive and helpful for characterization of the target fusion gene. Performing both Q-PCR and conventional PCR can detect each and every positive case of CML as well as give no false positive or false negative result.

Metrics

Metrics Loading ...

Downloads

Download data is not yet available.

Author Biographies

  • Md. Shahjalal Soad, University of Dhaka

    Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka, BANGLADESH

     
  • Khadiza Akhter, University of Dhaka

    Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka, BANGLADESH

     
  • Hossain Uddin Shekhar, University of Dhaka

    Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka, BANGLADESH

References

Anand MS, Varma N, Varma S , Rana KS, Malhotra P. Cytogenetic & molecular analyses in adult chronic myelogenous leukaemia patients in north India. Indian J Med Res. 2012; 135:42-48.

Aziz Z, Iqbal J, Akram M, Saeed S. Treatment of chronic myeloid leukemia in the imatinib era. Cancer 2007 Mar 15;109(6):1138-45.

Chasseriau J, Rivet J, Bilan F, Chomel J C, Guilhot F, Bourmeyster N, Kitzis A, Characterization of the Different BCR-ABL Transcripts with a Single Multiplex RT-PCR. J Mol Diagn. 2004; 6 (4): 343–347.

Chavan D, Ahmad F, Iyer P, Dalvi R, Kulkarni A, Mandava S, Das BR. Cytogenetic investigation in chronic myeloid leukemia: study from an Indian population. Asian Pac J Cancer Prev. 2006; 7(3):423.

Ding B, Zhou L, Jiang X, Li X, Zhong Q, Wang Z, Yi Z, Zheng Z, Yin C, Cao R, Liao L, Meng F. The relationship between clinical feature, complex immunophenotype, chromosome karyotype, and outcome of patients with acute myeloid leukemia in China. Dis Markers. 2015; 2015:382186. doi: 10.1155/2015/382186. Epub 2015 Apr 7.

Hermans A, Heisterkamp N, Von Lindern M, Van Baal S, Meijer D, Van der Plas D, Wiedemann LM, Groffen J, Bootsma D, Grosveld G. Unique fusion of bcr and c-abl genes in Philadelphia chromosome positive acute lymphoblastic leukemia. Cell 1987; 51:33–40.

Hochhaus A, Reiter A, Skladny H, Melo JV, Sick C, Berger U, Guo JQ, Arlinghaus RB, Hehlmann R, Goldman JM, Cross NCP. A novel BCR-ABL fusion gene (e6a2) in a patient with Philadelphia chromosome negative chronic myelogenous leukemia. Blood 1996; 88: 2236-2240.

Hooberman AL, Westbrook CA. Molecular methods to detect the Philadelphia chromosome. Clin Lab Med. 1990;10(4):839-55.

Hughes T. ABL kinase inhibitor therapy for CML: baseline assessments and response monitoring. Hematology Am Soc Hematol Educ Program. 2006:211-8.

Jobanputra V, Sivakumaran TA, Kucheria K. Assessment of Philadelphia Chromosome status in Chronic Myelogenous Leukemia (CML) Patients Using Cytogenetic and Molecular Cytogenetic Methods. J Anat. Soc. India. 1999; 48(2): 90-98.

Madashira M, Kotwal J, Kapoor R. Acute Myeloid Leukemia with BCR/ABL Fusion Chimera. Indian J Hematol Blood Transfus. 2014; 30 (Suppl 1): 280–282.

Melo J V, Hughes T P, Apperley J F, Chronic Myeloid Leukemia. Education Book 2003; 1: 132-152.

Mottalib MA, Sultana TA, Khalil MI, Gan SH, Islam MS, Choudhury S, Hossain MA. Phase distribution of chronic myeloid leukemia in Bangladesh. BMC Research Notes 2014; 7:142.

Neumann F, Herold C, Hildebrandt B, Kobbe G, Aivado M, Rong A, Free M, Rossig R, Fenk R, Schneider P, Gattermann N, Royer-Pokora B, Haas R, Kronenwett R: Quantitative real-time reverse-transcription polymerase chain reaction for diagnosis of BCR-ABL-positive leukemias and molecular monitoring following allogeneic stem cell transplantation. Eur J Haematol 2003; 70:1–10.

Ohsaka A, Hoshino S, Kobayashi M, Kudo H and Kawaguchi R. Blast crisis of Philadelphia chromosome-positive chronic myeloid leukaemia carrying micro-bcr breakpoint (e19a2 and e191a) Genomics Research Institute, SRL, Tokyo, Japan January 2002.

Pane F, Frigeri, F., Sindona, M., Luciano, L., Ferrara, F., Cimino, R., Meloni, G., Saglio, G., Salvatore, F. & Rotoli, B. (1996) Neutrophilic-chronic myeloid leukemia: a distinct disease with a specific molecular marker (BCR/ABLwith C3/A2 junction). Blood 1996; 88:2410 –2414.

Rowley JD. A new consistent chromosomal abnormality in chromc myelogenous leukaemia identified by quinacrine fluorescence and Giemsa staining. Nature 1973; 243:290-3.

Sawyers CL. Chronic Myeloid leukemia. N Engl J Med. 1999; 340 (17):1330-40.

Suh SP, Kee SJ, Lim WH, Song JW, Lee SK, Kim JP, Shin JH, Ryang DW. Multiplex in-cell reverse transcription-polymerase chain reaction for the simultaneous detection of p210 and p190 BCR-ABL mRNAs in chronic myeloid leukemia and Philadelphia-positive acute lymphoblastic leukemia cell lines. Clin Chem Lab Med 2000; 38:939–944.

Syed N, Usman M, Khaliq G, Adil S, Khurshid M. Clinico-pathologic features of chronic myeloid leukemia and risk stratification according to Sokal score. J Coll Physicians Surg Pak 2006. 16(5):336-9.

Tahira B, Asif M, Khan S, Hussain A, Shahwani MN, Malik A, Inayatullah S, Iqbal Z, Rasool M. Detection of BCR/ABL Fusion Gene by Hematological and Cytological Analysis in Chronic Myloid Leukemia Patients in Quetta, Pakistan. Asian Pac J Cancer Prev. 2015; 16(9):3793-7.

Tardieu S, Brun-Strang C, Berthaud P, Michallet M, Guilhot F, Rousselot P. Management of chronic myeloid leukemia in France: a multi-centered cross-sectional study on 538 patients. Pharmacoepidemiol Drug Saf. 2005; 14(8):545-53.

Westbrook CA, Hooberman AL, Spino C, Dodge RK, Larson RA, Davey F, Wurster-Hill DH, Sobol RE, Schiffer C, Bloomfield CD: Clinical significance of the BCR-ABL fusion gene in adult acute lymphoblastic leukemia: a Cancer and Leukemia Group B Study (8762).Blood 1992, 80:2983–2990.

Yaghmaie M, Ghaffari SH, Ghavamzadeh A, Alimoghaddam K, Jahani M, Mousavi SA, Irvani M, Bahar B, Bibordi I. Frequency of BCR-ABL fusion transcripts in Iranian patients with chronic myeloid leukemia. Arch Iran Med. 2008;11(3):247-51. doi: 08113/AIM.003

Zhao R C, Tarone G, Verfaillie C M. Presence of the adhesion inhibitory β1B integrin isoform on CML but not normal progenitors is at least in part responsible for the decreased CML progenitor adhesion. Blood 1997; 90 (Suppl.1):393a.

--0--

Downloads

Published

2016-12-31

How to Cite

Soad, M. S. ., Akhter, K. ., & Shekhar, H. U. . (2016). Detection and Characterization of BCR-ABL Transcripts in Bangladeshi CML Patients by Cost Effective RT-PCR. ABC Journal of Advanced Research, 5(2), 101-112. https://doi.org/10.18034/abcjar.v5i2.64

Most read articles by the same author(s)

1 2 3 4 5 6 7 8 9 10 > >>