Skip to main content
Top
Published in: Virchows Archiv 5/2015

Open Access 01-11-2015 | Original Article

Mitochondrial D310 mutation as clonal marker for solid tumors

Authors: Willemina R. R. Geurts-Giele, Gerard H. G. K. Gathier, Peggy N. Atmodimedjo, Hendrikus J. Dubbink, Winand N. M. Dinjens

Published in: Virchows Archiv | Issue 5/2015

Login to get access

Abstract

Patients with multiple tumors, either synchronous or metachronous, can have metastatic disease or suffer from multiple independent primary tumors. While proper diagnosis of these patients is important for prognosis and treatment, this can be challenging using only clinical and histological criteria. The aim of the present study was to evaluate the value of mitochondrial D310 mutation analysis in diagnostic questions regarding tumor clonality for a wide range of tumor types. Sanger sequencing of D310 was performed on a diagnostic cohort of 382 patients with 857 tumors that were previously analyzed using routine molecular analysis on genomic DNA. The D310 mononucleotide repeat was frequently somatically mutated (56/321, 17 %) in several tumor types, including breast, head and neck, gynecological, lung, colorectal, and skin tumors. For 84/327 (26 %) patients, a D310 mutation was detected in at least one of their tumors; for these patients, D310 can be used to determine the clonal relationship between their multiple tumors. Clonality assessments based on mitochondrial DNA (mtDNA) and routine genomic DNA analysis were concordant in 52/73 (71 %) patients. We conclude that D310 mutation status might aid in determining clonality of clinically challenging synchronous or metachronous tumors. To this end, next generation sequencing targeted genomic DNA assays should be complemented with mtDNA markers, such as the D310 repeat.
Appendix
Available only for authorised users
Literature
1.
go back to reference Mariotto AB, Rowland JH, Ries LA, Scoppa S, Feuer EJ (2007) Multiple cancer prevalence: a growing challenge in long-term survivorship. Cancer Epidemiol Biomarkers Prev 16:566–571CrossRefPubMed Mariotto AB, Rowland JH, Ries LA, Scoppa S, Feuer EJ (2007) Multiple cancer prevalence: a growing challenge in long-term survivorship. Cancer Epidemiol Biomarkers Prev 16:566–571CrossRefPubMed
2.
go back to reference van der Sijp JR, van Meerbeeck JP, Maat AP, Zondervan PE, Sleddens HF, van Geel AN, Eggermont AM, Dinjens WN (2002) Determination of the molecular relationship between multiple tumors within one patient is of clinical importance. J Clin Oncol 20:1105–1114CrossRefPubMed van der Sijp JR, van Meerbeeck JP, Maat AP, Zondervan PE, Sleddens HF, van Geel AN, Eggermont AM, Dinjens WN (2002) Determination of the molecular relationship between multiple tumors within one patient is of clinical importance. J Clin Oncol 20:1105–1114CrossRefPubMed
3.
go back to reference Warth A, Macher-Goeppinger S, Muley T, Thomas M, Hoffmann H, Schnabel PA, Penzel R, Schirmacher P, Aulmann S (2012) Clonality of multifocal nonsmall cell lung cancer: implications for staging and therapy. Eur Respir J 39:1437–1442CrossRefPubMed Warth A, Macher-Goeppinger S, Muley T, Thomas M, Hoffmann H, Schnabel PA, Penzel R, Schirmacher P, Aulmann S (2012) Clonality of multifocal nonsmall cell lung cancer: implications for staging and therapy. Eur Respir J 39:1437–1442CrossRefPubMed
4.
go back to reference Ortiz BH, Ailawadi M, Colitti C, Muto MG, Deavers M, Silva EG, Berkowitz RS, Mok SC, Gershenson DM (2001) Second primary or recurrence? Comparative patterns of p53 and K-ras mutations suggest that serous borderline ovarian tumors and subsequent serous carcinomas are unrelated tumors. Cancer Res 61:7264–7267PubMed Ortiz BH, Ailawadi M, Colitti C, Muto MG, Deavers M, Silva EG, Berkowitz RS, Mok SC, Gershenson DM (2001) Second primary or recurrence? Comparative patterns of p53 and K-ras mutations suggest that serous borderline ovarian tumors and subsequent serous carcinomas are unrelated tumors. Cancer Res 61:7264–7267PubMed
5.
go back to reference Coller HA, Khrapko K, Bodyak ND, Nekhaeva E, Herrero-Jimenez P, Thilly WG (2001) High frequency of homoplasmic mitochondrial DNA mutations in human tumors can be explained without selection. Nat Genet 28:147–150CrossRefPubMed Coller HA, Khrapko K, Bodyak ND, Nekhaeva E, Herrero-Jimenez P, Thilly WG (2001) High frequency of homoplasmic mitochondrial DNA mutations in human tumors can be explained without selection. Nat Genet 28:147–150CrossRefPubMed
6.
go back to reference Sanchez-Cespedes M, Parrella P, Nomoto S, Cohen D, Xiao Y, Esteller M, Jeronimo C, Jordan RC, Nicol T, Koch WM, Schoenberg M, Mazzarelli P, Fazio VM, Sidransky D (2001) Identification of a mononucleotide repeat as a major target for mitochondrial DNA alterations in human tumors. Cancer Res 61:7015–7019PubMed Sanchez-Cespedes M, Parrella P, Nomoto S, Cohen D, Xiao Y, Esteller M, Jeronimo C, Jordan RC, Nicol T, Koch WM, Schoenberg M, Mazzarelli P, Fazio VM, Sidransky D (2001) Identification of a mononucleotide repeat as a major target for mitochondrial DNA alterations in human tumors. Cancer Res 61:7015–7019PubMed
7.
go back to reference Mambo E, Gao X, Cohen Y, Guo Z, Talalay P, Sidransky D (2003) Electrophile and oxidant damage of mitochondrial DNA leading to rapid evolution of homoplasmic mutations. Proc Natl Acad Sci U S A 100:1838–1843PubMedCentralCrossRefPubMed Mambo E, Gao X, Cohen Y, Guo Z, Talalay P, Sidransky D (2003) Electrophile and oxidant damage of mitochondrial DNA leading to rapid evolution of homoplasmic mutations. Proc Natl Acad Sci U S A 100:1838–1843PubMedCentralCrossRefPubMed
8.
go back to reference Shidara Y, Yamagata K, Kanamori T, Nakano K, Kwong JQ, Manfredi G, Oda H, Ohta S (2005) Positive contribution of pathogenic mutations in the mitochondrial genome to the promotion of cancer by prevention from apoptosis. Cancer Res 65:1655–1663CrossRefPubMed Shidara Y, Yamagata K, Kanamori T, Nakano K, Kwong JQ, Manfredi G, Oda H, Ohta S (2005) Positive contribution of pathogenic mutations in the mitochondrial genome to the promotion of cancer by prevention from apoptosis. Cancer Res 65:1655–1663CrossRefPubMed
9.
go back to reference Lee HC, Chang CM, Chi CW (2010) Somatic mutations of mitochondrial DNA in aging and cancer progression. Ageing Res Rev 9(Suppl 1):S47–S58CrossRefPubMed Lee HC, Chang CM, Chi CW (2010) Somatic mutations of mitochondrial DNA in aging and cancer progression. Ageing Res Rev 9(Suppl 1):S47–S58CrossRefPubMed
11.
go back to reference Giunti L, Bernini G, Forni M, Tucci F, Wheeler E, Sardi I (2006) Clonality analysis of pediatric multiple tumors: two case reports and laboratory investigation. J Pediatr Hematol Oncol 28:241–248CrossRefPubMed Giunti L, Bernini G, Forni M, Tucci F, Wheeler E, Sardi I (2006) Clonality analysis of pediatric multiple tumors: two case reports and laboratory investigation. J Pediatr Hematol Oncol 28:241–248CrossRefPubMed
12.
go back to reference Nomoto S, Yamashita K, Koshikawa K, Nakao A, Sidransky D (2002) Mitochondrial D-loop mutations as clonal markers in multicentric hepatocellular carcinoma and plasma. Clin Cancer Res 8:481–487PubMed Nomoto S, Yamashita K, Koshikawa K, Nakao A, Sidransky D (2002) Mitochondrial D-loop mutations as clonal markers in multicentric hepatocellular carcinoma and plasma. Clin Cancer Res 8:481–487PubMed
13.
go back to reference Masuda S, Kadowaki T, Kumaki N, Tang X, Tokuda Y, Yoshimura S, Takekoshi S, Osamura RY (2012) Analysis of gene alterations of mitochondrial DNA D-loop regions to determine breast cancer clonality. Br J Cancer 107:2016–2023PubMedCentralCrossRefPubMed Masuda S, Kadowaki T, Kumaki N, Tang X, Tokuda Y, Yoshimura S, Takekoshi S, Osamura RY (2012) Analysis of gene alterations of mitochondrial DNA D-loop regions to determine breast cancer clonality. Br J Cancer 107:2016–2023PubMedCentralCrossRefPubMed
14.
go back to reference Montebugnoli L, Leonardi E, Morandi L, Farnedi A, Gissi DB, Marchetti C, Tarsitano A, Balbi T, Gentile L, Cocchi R, Foschini MP (2014) Genetic relationship between multiple squamous cell carcinomas arising in the oral cavity. Head Neck 36:94–100CrossRefPubMed Montebugnoli L, Leonardi E, Morandi L, Farnedi A, Gissi DB, Marchetti C, Tarsitano A, Balbi T, Gentile L, Cocchi R, Foschini MP (2014) Genetic relationship between multiple squamous cell carcinomas arising in the oral cavity. Head Neck 36:94–100CrossRefPubMed
15.
go back to reference van Lier MG, Wagner A, van Leerdam ME, Biermann K, Kuipers EJ, Steyerberg EW, Dubbink HJ, Dinjens WN (2010) A review on the molecular diagnostics of Lynch syndrome: a central role for the pathology laboratory. J Cell Mol Med 14:181–197PubMedCentralCrossRefPubMed van Lier MG, Wagner A, van Leerdam ME, Biermann K, Kuipers EJ, Steyerberg EW, Dubbink HJ, Dinjens WN (2010) A review on the molecular diagnostics of Lynch syndrome: a central role for the pathology laboratory. J Cell Mol Med 14:181–197PubMedCentralCrossRefPubMed
16.
go back to reference Wong LJ (2013) Next generation molecular diagnosis of mitochondrial disorders. Mitochondrion 13:379–387CrossRefPubMed Wong LJ (2013) Next generation molecular diagnosis of mitochondrial disorders. Mitochondrion 13:379–387CrossRefPubMed
Metadata
Title
Mitochondrial D310 mutation as clonal marker for solid tumors
Authors
Willemina R. R. Geurts-Giele
Gerard H. G. K. Gathier
Peggy N. Atmodimedjo
Hendrikus J. Dubbink
Winand N. M. Dinjens
Publication date
01-11-2015
Publisher
Springer Berlin Heidelberg
Published in
Virchows Archiv / Issue 5/2015
Print ISSN: 0945-6317
Electronic ISSN: 1432-2307
DOI
https://doi.org/10.1007/s00428-015-1817-5

Other articles of this Issue 5/2015

Virchows Archiv 5/2015 Go to the issue

Editorial

In this issue