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PMID: 22402960 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Exposure to bleomycin, etoposide, and cis-platinum alters rat sperm chromatin integrity and sperm head protein profile.

Biology of reproduction ·Vol. 86 ·No. 5 ·2012-05-00 ·Pages 166, 1-10

Maselli J, Hales BF, Chan P, Robaire B

Abstract

Testicular cancer, currently the most common cancer affecting men of reproductive age, is one of the most curable malignancies due to the progress made in the early diagnosis and effective treatment of this disease. The coadministration of bleomycin, etoposide, and cis-platinum (BEP) has brought the 5-yr survival rate of testis cancer patients to over 90%. However, this treatment results in reproductive chemotoxic effects. We assessed the effect of BEP treatment on sperm chromatin integrity and sperm head protein profiles of adult male Brown Norway rats following 9 wk of treatment with BEP and in animals treated for 9 wk and then subjected to a 9-wk recovery period. Both the susceptibility of DNA to denaturation and the number of strand breaks were significantly increased in mature sperm following 9 wk of treatment with BEP; proteomic analysis revealed that the expression of several proteins, including HSP90AA1 and HSP90B1, was markedly affected. Following a 9-wk recovery period, mature sperm did not show significant DNA damage, indicating that repair had potentially occurred. Interestingly, the protamination level of the sperm of these animals was significantly decreased, while histones HIST1H1D (H1.2), HIST1H4B (H4), HIST2H2AA3 (H2A1), and HIST1H2BA (H2B1A) were concomitantly up-regulated; this was not observed in the sperm immediately following 9 wk of treatment. Thus, there are persistent effects on proteins in sperm heads from the cauda epididymidis 9 wk posttreatment, in the absence of DNA strand breaks. We suggest that these effects on the sperm head proteome may contribute to long-lasting adverse effects in the progeny of BEP-exposed males.

MeSH Terms
Animals Antineoplastic Agents/adverse effects,therapeutic use Antineoplastic Combined Chemotherapy Protocols/adverse effects,therapeutic use Bleomycin/adverse effects,therapeutic use Chromatin/drug effects,metabolism Cisplatin/adverse effects,therapeutic use DNA Breaks/drug effects Etoposide/adverse effects,therapeutic use Histones/metabolism Male Protamines/metabolism Proteomics Rats Sperm Head/drug effects Spermatogenesis/drug effects Spermatozoa/drug effects Testicular Neoplasms/drug therapy Up-Regulation
Chemicals
Antineoplastic Agents Chromatin Histones Protamines Bleomycin Etoposide Cisplatin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Maselli Jennifer
Department of Pharmacology and Therapeutics, McGill University, Montréal, Québec, Canada.
Hales Barbara F
Chan Peter
Robaire Bernard
References (38)
38 references, click to expand
  1. Tyrosine phosphorylation activates surface chaperones facilitating sperm-zona recognition.
    J Cell Sci. 2004 Jul 15;117(Pt 16):3645-57 PMID: 15252132
  2. Proteomic identification of human sperm proteins.
    Proteomics. 2006 Aug;6(15):4356-69 PMID: 16819732
  3. Mass spectrometry-based label-free quantitative proteomics.
    J Biomed Biotechnol. 2010;2010:840518 PMID: 19911078
  4. Impact of the chemotherapy cocktail used to treat testicular cancer on the gene expression profile of germ cells from male Brown-Norway rats.
    Biol Reprod. 2009 Feb;80(2):320-7 PMID: 18987330
  5. DNA integrity is compromised in protamine-deficient human sperm.
    J Androl. 2005 Nov-Dec;26(6):741-8 PMID: 16291969
  6. DNA damage in human and mouse spermatozoa after in vitro-irradiation assessed by the comet assay.
    Adv Exp Med Biol. 1998;444:79-91; discussion 92-3 PMID: 10026937
  7. Continuous exposure to dibromoacetic acid delays pubertal development and compromises sperm quality in the rat.
    Toxicol Sci. 2004 Oct;81(2):419-29 PMID: 15254335
  8. Exposure of male rats to cyclophosphamide alters the chromatin structure and basic proteome in spermatozoa.
    Hum Reprod. 2007 May;22(5):1431-42 PMID: 17303633
  9. Sperm chromatin structure assay: its clinical use for detecting sperm DNA fragmentation in male infertility and comparisons with other techniques.
    J Androl. 2002 Jan-Feb;23(1):25-43 PMID: 11780920
  10. Increasing incidence of testicular cancer worldwide: a review.
    J Urol. 2003 Jul;170(1):5-11 PMID: 12796635
  11. Recent advances in the treatment of testicular cancer.
    Expert Rev Anticancer Ther. 2005 Feb;5(1):123-38 PMID: 15757445
  12. The human sperm epigenome and its potential role in embryonic development.
    Mol Hum Reprod. 2010 Jan;16(1):37-47 PMID: 19906823
  13. Sperm protamine 1/protamine 2 ratios are related to in vitro fertilization pregnancy rates and predictive of fertilization ability.
    Fertil Steril. 2006 Nov;86(5):1408-15 PMID: 17011555
  14. Effects of chemotherapeutic agents for testicular cancer on the male rat reproductive system, spermatozoa, and fertility.
    J Androl. 2006 Mar-Apr;27(2):189-200 PMID: 16278370
  15. Differential proteomics leads to identification of domain-specific epididymal sperm proteins.
    J Androl. 2011 May-Jun;32(3):240-59 PMID: 20966424
  16. Effects of the chemotherapy cocktail used to treat testicular cancer on sperm chromatin integrity.
    J Androl. 2007 Mar-Apr;28(2):241-9; discussion 250-1 PMID: 17021337
  17. Environmental toxicants cause sperm DNA fragmentation as detected by the Sperm Chromatin Structure Assay (SCSA).
    Toxicol Appl Pharmacol. 2005 Sep 1;207(2 Suppl):532-7 PMID: 15987647
  18. Reversibility of the effects of subchronic exposure to the cancer chemotherapeutics bleomycin, etoposide, and cisplatin on spermatogenesis, fertility, and progeny outcome in the male rat.
    J Androl. 2008 Jul-Aug;29(4):408-17 PMID: 18296477
  19. Changes in spermatozoal chromatin packaging and susceptibility to oxidative challenge during aging.
    Fertil Steril. 2005 Oct;84 Suppl 2:1191-8 PMID: 16210011
  20. Abundant alkali-sensitive sites in DNA of human and mouse sperm.
    Exp Cell Res. 1989 Oct;184(2):461-70 PMID: 2806399
  21. Bleomycin, etoposide, and cisplatin for three cycles compared with etoposide and cisplatin for four cycles in good-risk germ cell tumors: is there a preferred regimen?
    J Clin Oncol. 2006 Jun 1;24(16):2597-8; author reply 2598-9 PMID: 16735718
  22. Femtomole sequencing of proteins from polyacrylamide gels by nano-electrospray mass spectrometry.
    Nature. 1996 Feb 1;379(6564):466-9 PMID: 8559255
  23. Distinctive chromatin in human sperm packages genes for embryo development.
    Nature. 2009 Jul 23;460(7254):473-8 PMID: 19525931
  24. Trends in testicular cancer incidence and mortality in 22 European countries: continuing increases in incidence and declines in mortality.
    Int J Cancer. 2006 Jun 15;118(12):3099-111 PMID: 16395710
  25. The rat sperm proteome characterized via IPG strip prefractionation and LC-MS/MS identification.
    Proteomics. 2008 Jun;8(11):2312-21 PMID: 18528845
  26. Toxicants and human sperm chromatin integrity.
    Mol Hum Reprod. 2010 Jan;16(1):14-22 PMID: 19812089
  27. Packaging paternal chromosomes with protamine.
    Nat Genet. 2001 May;28(1):10-2 PMID: 11326265
  28. Modified expression of several sperm proteins after chronic exposure to the antiandrogenic compound vinclozolin.
    Toxicol Sci. 2010 Oct;117(2):475-84 PMID: 20616205
  29. Use of titanium dioxide to find phosphopeptide and total protein changes during epididymal sperm maturation.
    J Proteome Res. 2011 Mar 4;10(3):1004-17 PMID: 21155529
  30. Chronic cyclophosphamide exposure alters the profile of rat sperm nuclear matrix proteins.
    Biol Reprod. 2007 Aug;77(2):303-11 PMID: 17475930
  31. Characterisation of a human sperm cell subpopulation marked by the presence of the TSH2B histone.
    Reprod Fertil Dev. 2007;19(2):392-7 PMID: 17257526
  32. Tyrosine phosphorylation of HSP-90 during mammalian sperm capacitation.
    Biol Reprod. 2003 Dec;69(6):1801-7 PMID: 12890735
  33. Advances in the treatment of testicular cancer.
    Drugs. 2006;66(5):641-59 PMID: 16620142
  34. Effect of deoxyribonucleic acid protamination on fluorochrome staining and in situ nick-translation of murine and human mature spermatozoa.
    Biol Reprod. 1993 Nov;49(5):1083-8 PMID: 8286574
  35. Two-dimensional fluorescence difference gel electrophoresis analysis of spermatogenesis in the rat.
    J Proteome Res. 2007 Feb;6(2):683-97 PMID: 17269725
  36. Mortality and incidence of second cancers following treatment for testicular cancer.
    Br J Cancer. 2007 Feb 12;96(3):529-33 PMID: 17262080
  37. Sequence-specific packaging of DNA in human sperm chromatin.
    Science. 1987 May 22;236(4804):962-4 PMID: 3576213
  38. Mouse sperm chromatin proteins: quantitative isolation and partial characterization.
    Biochemistry. 1977 Sep 6;16(18):4074-80 PMID: 911755
Article Info
Journal
Biology of reproduction
Abbr.
Biol Reprod
ISSN
1529-7268
Published
2012-05-00
Epub
2012-00-31
Pages
166, 1-10
Language
English
Region
United States
NLM ID
0207224
PMCID
PMC4480069
Subset
IM
Grants
Canadian Institutes of Health Research · MOP-86636 · Canada
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