[1] Brinkmann K, Schell M, Hoppe T, et al. Regulation of the DNA damage response by ubiquitin conjugation. Front Genet, 2015; 10, 98. https://www.researchgate.net/profile/Kerstin_Brinkmann/publication/273756063_Regulation_of_the_DNA_damage_response_by_ubiquitin_conjugation/links/550a55a40cf26198a63a7f61.pdf?disableCoverPage=true
[2] Di CX, Sun C, Li HY, et al. Diallyl disulfide enhances carbon ion beams-induced apoptotic cell death in cervical cancer cells through regulating Tap73/ΔNp73. Cell Cycle, 2015; 14, 3725-33. doi:  10.1080/15384101.2015.1104438
[3] Li HY, Zhang H. Proteome analysis for profiling infertility markers in male mouse sperm after carbon ion radiation. Toxicology, 2013; 5, 306, 85-92. http://www.ncbi.nlm.nih.gov/pubmed/23435181
[4] Li HY, He YX, Zhang H, et al. Differential proteome and gene expression reveal response to carbon ion irradiation in pubertal mice testes. Toxicol Lett, 2014; 21, 433-44. https://www.researchgate.net/publication/259807325_Differential_proteome_and_gene_expression_reveal_response_to_carbon_ion_irradiation_in_pubertal_mice_testes
[5] Lee JC, Yoon YD. Gamma-radiation-induced follicular degeneration in the prepubertal mouse ovary. Mutat Res, 2005; 578, 247-55. doi:  10.1016/j.mrfmmm.2005.05.019
[6] Huang S, Dang Y, Li F, et al. Biological intensity-modulated radiotherapy plus neoadjuvant chemotherapy for multiple peritoneal metastases of ovarian cancer: A case report. Oncol Lett, 2015; 9, 1239-43. https://www.researchgate.net/profile/Shigao_Huang/publication/272097469_Biological_intensity-modulated_radiotherapy_plus_neoadjuvant_chemotherapy_for_multiple_peritoneal_metastases_of_ovarian_cancer_A_case_report/links/5639545d08aed5314d221efa.pdf?inViewer=0&pdfJsDownload=0&origin=publication_detail
[7] Mishra B, Ortiz L, Luderer U, et al. Charged iron particles, components of space radiation, destroy ovarian follicles. Hum Reprod, 2016; 31, 1816-26. doi:  10.1093/humrep/dew126
[8] Susor A, Liskova L, Toralova T, et al. Role of ubiquitin C-terminal hydrolase-L1 in antipolyspermy defense of mammalian oocytes. Biol Reprod, 2010; 82, 1151-61. doi:  10.1095/biolreprod.109.081547
[9] Sekiguchi S, Kwon J, Yoshida E, et al. Localization of ubiquitin C-terminal hydrolase L1 in mouse ova and its function in the plasma membrane to blockpolyspermy. Am J Pathol, 2006; 169, 1722-9. doi:  10.2353/ajpath.2006.060301
[10] Susor A, Ellederova Z, Jelinkova L, et al. Proteomic analysis of porcine oocytes during in vitro maturation reveals essential role for the ubiquitin C-terminal hydrolase-L1. Reproduction, 2007; 134, 559-68. doi:  10.1530/REP-07-0079
[11] Gu YQ, Che QJ, Gu Z, et al. Ubiquitin carboxyl-terminal hydrolase L1 contributes to the oocyte selective elimination in prepubertal mouse ovaries. Acta Physiologica Sinica, 2009; 61, 175-84. https://www.researchgate.net/publication/24308735_Ubiquitin_carboxyl-terminal_hydrolase_L1_contributes_to_the_oocyte_selective_elimination_in_prepubertal_mouse_ovaries