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Alawadi S, Ghabreau L, Alsaleh M, et al. (September 2011). "P53 gene polymorphisms and breast cancer risk in Arab women". Medical Oncology. 28 (3): 709–15. doi:10.1007/s12032-010-9505-4. PMID20443084. S2CID207372095.
Piao JM, Kim HN, Song HR, et al. (September 2011). "p53 codon 72 polymorphism and the risk of lung cancer in a Korean population". Lung Cancer. 73 (3): 264–7. doi:10.1016/j.lungcan.2010.12.017. PMID21316118.
Wang JJ, Zheng Y, Sun L, et al. (November 2011). "TP53 codon 72 polymorphism and colorectal cancer susceptibility: a meta-analysis". Molecular Biology Reports. 38 (8): 4847–53. doi:10.1007/s11033-010-0619-8. PMID21140221. S2CID11730631.
Jiang DK, Yao L, Ren WH, et al. (December 2011). "TP53 Arg72Pro polymorphism and endometrial cancer risk: a meta-analysis". Medical Oncology. 28 (4): 1129–35. doi:10.1007/s12032-010-9597-x. PMID20552298. S2CID32990396.
Thurow HS, Haack R, Hartwig FP, et al. (December 2011). "TP53 gene polymorphism: importance to cancer, ethnicity and birth weight in a Brazilian cohort". Journal of Biosciences. 36 (5): 823–31. doi:10.1007/s12038-011-9147-5. PMID22116280. S2CID23027087.
Huang CY, Su CT, Chu JS, et al. (December 2011). "The polymorphisms of P53 codon 72 and MDM2 SNP309 and renal cell carcinoma risk in a low arsenic exposure area". Toxicology and Applied Pharmacology. 257 (3): 349–55. Bibcode:2011ToxAP.257..349H. doi:10.1016/j.taap.2011.09.018. PMID21982800.
Babaei G, Aliarab A, Asghari Vostakolaei M, et al. (November 2021). "Crosslink between p53 and metastasis: focus on epithelial-mesenchymal transition, cancer stem cell, angiogenesis, autophagy, and anoikis". Molecular Biology Reports. 48 (11): 7545–7557. doi:10.1007/s11033-021-06706-1. PMID34519942. S2CID237506513.
Teodoro JG, Evans SK, Green MR (November 2007). "Inhibition of tumor angiogenesis by p53: a new role for the guardian of the genome". Journal of Molecular Medicine (Review). 85 (11): 1175–1186. doi:10.1007/s00109-007-0221-2. PMID17589818. S2CID10094554.
Borchsenius SN, Daks A, Fedorova O, et al. (January 2018). "Effects of mycoplasma infection on the host organism response via p53/NF-κB signaling". Journal of Cellular Physiology. 234 (1): 171–180. doi:10.1002/jcp.26781. PMID30146800.
Bykov VJ, Eriksson SE, Bianchi J, et al. (February 2018). "Targeting mutant p53 for efficient cancer therapy". Nature Reviews. Cancer. 18 (2): 89–102. doi:10.1038/nrc.2017.109. PMID29242642. S2CID4552678.
Ventura A, Kirsch DG, McLaughlin ME, et al. (February 2007). "Restoration of p53 function leads to tumour regression in vivo". Nature. 445 (7128): 661–5. doi:10.1038/nature05541. PMID17251932. S2CID4373520.
Chong KH, Samarasinghe S, Kulasiri D (December 2013). "Mathematical modelling of p53 basal dynamics and DNA damage response". C-fACS. 259 (20th International Congress on Mathematical Modelling and Simulation): 670–6. doi:10.1016/j.mbs.2014.10.010. PMID25433195.
Larsen S, Yokochi T, Isogai E, et al. (February 2010). "LMO3 interacts with p53 and inhibits its transcriptional activity". Biochemical and Biophysical Research Communications. 392 (3): 252–7. doi:10.1016/j.bbrc.2009.12.010. PMID19995558.
Bell S, Klein C, Müller L, et al. (October 2002). "p53 contains large unstructured regions in its native state". Journal of Molecular Biology. 322 (5): 917–27. doi:10.1016/S0022-2836(02)00848-3. PMID12367518.
Kojic S, Medeot E, Guccione E, et al. (May 2004). "The Ankrd2 protein, a link between the sarcomere and the nucleus in skeletal muscle". Journal of Molecular Biology. 339 (2): 313–25. doi:10.1016/j.jmb.2004.03.071. PMID15136035.
Khanna KK, Keating KE, Kozlov S, et al. (December 1998). "ATM associates with and phosphorylates p53: mapping the region of interaction". Nature Genetics. 20 (4): 398–400. doi:10.1038/3882. PMID9843217. S2CID23994762.
Leu JI, Dumont P, Hafey M, et al. (May 2004). "Mitochondrial p53 activates Bak and causes disruption of a Bak-Mcl1 complex". Nature Cell Biology. 6 (5): 443–50. doi:10.1038/ncb1123. PMID15077116. S2CID43063712.
Garkavtsev IV, Kley N, Grigorian IA, et al. (December 2001). "The Bloom syndrome protein interacts and cooperates with p53 in regulation of transcription and cell growth control". Oncogene. 20 (57): 8276–80. doi:10.1038/sj.onc.1205120. PMID11781842. S2CID13084911.
Abramovitch S, Werner H (2003). "Functional and physical interactions between BRCA1 and p53 in transcriptional regulation of the IGF-IR gene". Hormone and Metabolic Research. 35 (11–12): 758–62. doi:10.1055/s-2004-814154. PMID14710355. S2CID20898175.
Chai YL, Cui J, Shao N, et al. (January 1999). "The second BRCT domain of BRCA1 proteins interacts with p53 and stimulates transcription from the p21WAF1/CIP1 promoter". Oncogene. 18 (1): 263–8. doi:10.1038/sj.onc.1202323. PMID9926942. S2CID7462625.
Zhang H, Somasundaram K, Peng Y, et al. (April 1998). "BRCA1 physically associates with p53 and stimulates its transcriptional activity". Oncogene. 16 (13): 1713–21. doi:10.1038/sj.onc.1201932. PMID9582019. S2CID24616900.
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Ababneh M, Götz C, Montenarh M (May 2001). "Downregulation of the cdc2/cyclin B protein kinase activity by binding of p53 to p34(cdc2)". Biochemical and Biophysical Research Communications. 283 (2): 507–12. doi:10.1006/bbrc.2001.4792. PMID11327730.
Cuddihy AR, Wong AH, Tam NW, et al. (April 1999). "The double-stranded RNA activated protein kinase PKR physically associates with the tumor suppressor p53 protein and phosphorylates human p53 on serine 392 in vitro". Oncogene. 18 (17): 2690–702. doi:10.1038/sj.onc.1202620. PMID10348343. S2CID22467088.
Hofmann TG, Möller A, Sirma H, et al. (January 2002). "Regulation of p53 activity by its interaction with homeodomain-interacting protein kinase-2". Nature Cell Biology. 4 (1): 1–10. doi:10.1038/ncb715. PMID11740489. S2CID37789883.
Wadhwa R, Yaguchi T, Hasan MK, et al. (April 2002). "Hsp70 family member, mot-2/mthsp70/GRP75, binds to the cytoplasmic sequestration domain of the p53 protein". Experimental Cell Research. 274 (2): 246–53. doi:10.1006/excr.2002.5468. PMID11900485.
Guo A, Salomoni P, Luo J, et al. (October 2000). "The function of PML in p53-dependent apoptosis". Nature Cell Biology. 2 (10): 730–6. doi:10.1038/35036365. PMID11025664. S2CID13480833.
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Romanova LY, Willers H, Blagosklonny MV, et al. (December 2004). "The interaction of p53 with replication protein A mediates suppression of homologous recombination". Oncogene. 23 (56): 9025–33. doi:10.1038/sj.onc.1207982. PMID15489903. S2CID23482723.
Riva F, Zuco V, Vink AA, et al. (December 2001). "UV-induced DNA incision and proliferating cell nuclear antigen recruitment to repair sites occur independently of p53-replication protein A interaction in p53 wild type and mutant ovarian carcinoma cells". Carcinogenesis. 22 (12): 1971–8. doi:10.1093/carcin/22.12.1971. PMID11751427.
Cowell IG, Okorokov AL, Cutts SA, et al. (February 2000). "Human topoisomerase IIalpha and IIbeta interact with the C-terminal region of p53". Experimental Cell Research. 255 (1): 86–94. doi:10.1006/excr.1999.4772. PMID10666337.
Derbyshire DJ, Basu BP, Date T, et al. (October 2002). "Purification, crystallization and preliminary X-ray analysis of the BRCT domains of human 53BP1 bound to the p53 tumour suppressor". Acta Crystallographica D. 58 (Pt 10 Pt 2): 1826–9. Bibcode:2002AcCrD..58.1826D. doi:10.1107/S0907444902010910. PMID12351827.
Sehat B, Andersson S, Girnita L, et al. (July 2008). "Identification of c-Cbl as a new ligase for insulin-like growth factor-I receptor with distinct roles from Mdm2 in receptor ubiquitination and endocytosis". Cancer Research. 68 (14): 5669–77. doi:10.1158/0008-5472.CAN-07-6364. PMID18632619.
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Huang CY, Su CT, Chu JS, et al. (December 2011). "The polymorphisms of P53 codon 72 and MDM2 SNP309 and renal cell carcinoma risk in a low arsenic exposure area". Toxicology and Applied Pharmacology. 257 (3): 349–55. Bibcode:2011ToxAP.257..349H. doi:10.1016/j.taap.2011.09.018. PMID21982800.
Derbyshire DJ, Basu BP, Date T, et al. (October 2002). "Purification, crystallization and preliminary X-ray analysis of the BRCT domains of human 53BP1 bound to the p53 tumour suppressor". Acta Crystallographica D. 58 (Pt 10 Pt 2): 1826–9. Bibcode:2002AcCrD..58.1826D. doi:10.1107/S0907444902010910. PMID12351827.
Klug SJ, Ressing M, Koenig J, et al. (August 2009). "TP53 codon 72 polymorphism and cervical cancer: a pooled analysis of individual data from 49 studies". The Lancet. Oncology. 10 (8): 772–84. doi:10.1016/S1470-2045(09)70187-1. PMID19625214.
Alawadi S, Ghabreau L, Alsaleh M, et al. (September 2011). "P53 gene polymorphisms and breast cancer risk in Arab women". Medical Oncology. 28 (3): 709–15. doi:10.1007/s12032-010-9505-4. PMID20443084. S2CID207372095.
Piao JM, Kim HN, Song HR, et al. (September 2011). "p53 codon 72 polymorphism and the risk of lung cancer in a Korean population". Lung Cancer. 73 (3): 264–7. doi:10.1016/j.lungcan.2010.12.017. PMID21316118.
Wang JJ, Zheng Y, Sun L, et al. (November 2011). "TP53 codon 72 polymorphism and colorectal cancer susceptibility: a meta-analysis". Molecular Biology Reports. 38 (8): 4847–53. doi:10.1007/s11033-010-0619-8. PMID21140221. S2CID11730631.
Jiang DK, Yao L, Ren WH, et al. (December 2011). "TP53 Arg72Pro polymorphism and endometrial cancer risk: a meta-analysis". Medical Oncology. 28 (4): 1129–35. doi:10.1007/s12032-010-9597-x. PMID20552298. S2CID32990396.
Thurow HS, Haack R, Hartwig FP, et al. (December 2011). "TP53 gene polymorphism: importance to cancer, ethnicity and birth weight in a Brazilian cohort". Journal of Biosciences. 36 (5): 823–31. doi:10.1007/s12038-011-9147-5. PMID22116280. S2CID23027087.
Huang CY, Su CT, Chu JS, et al. (December 2011). "The polymorphisms of P53 codon 72 and MDM2 SNP309 and renal cell carcinoma risk in a low arsenic exposure area". Toxicology and Applied Pharmacology. 257 (3): 349–55. Bibcode:2011ToxAP.257..349H. doi:10.1016/j.taap.2011.09.018. PMID21982800.
Babaei G, Aliarab A, Asghari Vostakolaei M, et al. (November 2021). "Crosslink between p53 and metastasis: focus on epithelial-mesenchymal transition, cancer stem cell, angiogenesis, autophagy, and anoikis". Molecular Biology Reports. 48 (11): 7545–7557. doi:10.1007/s11033-021-06706-1. PMID34519942. S2CID237506513.
Teodoro JG, Evans SK, Green MR (November 2007). "Inhibition of tumor angiogenesis by p53: a new role for the guardian of the genome". Journal of Molecular Medicine (Review). 85 (11): 1175–1186. doi:10.1007/s00109-007-0221-2. PMID17589818. S2CID10094554.
Borchsenius SN, Daks A, Fedorova O, et al. (January 2018). "Effects of mycoplasma infection on the host organism response via p53/NF-κB signaling". Journal of Cellular Physiology. 234 (1): 171–180. doi:10.1002/jcp.26781. PMID30146800.
Bykov VJ, Eriksson SE, Bianchi J, et al. (February 2018). "Targeting mutant p53 for efficient cancer therapy". Nature Reviews. Cancer. 18 (2): 89–102. doi:10.1038/nrc.2017.109. PMID29242642. S2CID4552678.
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Chong KH, Samarasinghe S, Kulasiri D (December 2013). "Mathematical modelling of p53 basal dynamics and DNA damage response". C-fACS. 259 (20th International Congress on Mathematical Modelling and Simulation): 670–6. doi:10.1016/j.mbs.2014.10.010. PMID25433195.
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Bell S, Klein C, Müller L, et al. (October 2002). "p53 contains large unstructured regions in its native state". Journal of Molecular Biology. 322 (5): 917–27. doi:10.1016/S0022-2836(02)00848-3. PMID12367518.
Kojic S, Medeot E, Guccione E, et al. (May 2004). "The Ankrd2 protein, a link between the sarcomere and the nucleus in skeletal muscle". Journal of Molecular Biology. 339 (2): 313–25. doi:10.1016/j.jmb.2004.03.071. PMID15136035.
Khanna KK, Keating KE, Kozlov S, et al. (December 1998). "ATM associates with and phosphorylates p53: mapping the region of interaction". Nature Genetics. 20 (4): 398–400. doi:10.1038/3882. PMID9843217. S2CID23994762.
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Chai YL, Cui J, Shao N, et al. (January 1999). "The second BRCT domain of BRCA1 proteins interacts with p53 and stimulates transcription from the p21WAF1/CIP1 promoter". Oncogene. 18 (1): 263–8. doi:10.1038/sj.onc.1202323. PMID9926942. S2CID7462625.
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Ababneh M, Götz C, Montenarh M (May 2001). "Downregulation of the cdc2/cyclin B protein kinase activity by binding of p53 to p34(cdc2)". Biochemical and Biophysical Research Communications. 283 (2): 507–12. doi:10.1006/bbrc.2001.4792. PMID11327730.
Cuddihy AR, Wong AH, Tam NW, et al. (April 1999). "The double-stranded RNA activated protein kinase PKR physically associates with the tumor suppressor p53 protein and phosphorylates human p53 on serine 392 in vitro". Oncogene. 18 (17): 2690–702. doi:10.1038/sj.onc.1202620. PMID10348343. S2CID22467088.
Hofmann TG, Möller A, Sirma H, et al. (January 2002). "Regulation of p53 activity by its interaction with homeodomain-interacting protein kinase-2". Nature Cell Biology. 4 (1): 1–10. doi:10.1038/ncb715. PMID11740489. S2CID37789883.
Wadhwa R, Yaguchi T, Hasan MK, et al. (April 2002). "Hsp70 family member, mot-2/mthsp70/GRP75, binds to the cytoplasmic sequestration domain of the p53 protein". Experimental Cell Research. 274 (2): 246–53. doi:10.1006/excr.2002.5468. PMID11900485.
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Romanova LY, Willers H, Blagosklonny MV, et al. (December 2004). "The interaction of p53 with replication protein A mediates suppression of homologous recombination". Oncogene. 23 (56): 9025–33. doi:10.1038/sj.onc.1207982. PMID15489903. S2CID23482723.
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Cowell IG, Okorokov AL, Cutts SA, et al. (February 2000). "Human topoisomerase IIalpha and IIbeta interact with the C-terminal region of p53". Experimental Cell Research. 255 (1): 86–94. doi:10.1006/excr.1999.4772. PMID10666337.
Derbyshire DJ, Basu BP, Date T, et al. (October 2002). "Purification, crystallization and preliminary X-ray analysis of the BRCT domains of human 53BP1 bound to the p53 tumour suppressor". Acta Crystallographica D. 58 (Pt 10 Pt 2): 1826–9. Bibcode:2002AcCrD..58.1826D. doi:10.1107/S0907444902010910. PMID12351827.
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Jiang DK, Yao L, Ren WH, et al. (December 2011). "TP53 Arg72Pro polymorphism and endometrial cancer risk: a meta-analysis". Medical Oncology. 28 (4): 1129–35. doi:10.1007/s12032-010-9597-x. PMID20552298. S2CID32990396.
Thurow HS, Haack R, Hartwig FP, et al. (December 2011). "TP53 gene polymorphism: importance to cancer, ethnicity and birth weight in a Brazilian cohort". Journal of Biosciences. 36 (5): 823–31. doi:10.1007/s12038-011-9147-5. PMID22116280. S2CID23027087.
Babaei G, Aliarab A, Asghari Vostakolaei M, et al. (November 2021). "Crosslink between p53 and metastasis: focus on epithelial-mesenchymal transition, cancer stem cell, angiogenesis, autophagy, and anoikis". Molecular Biology Reports. 48 (11): 7545–7557. doi:10.1007/s11033-021-06706-1. PMID34519942. S2CID237506513.
Teodoro JG, Evans SK, Green MR (November 2007). "Inhibition of tumor angiogenesis by p53: a new role for the guardian of the genome". Journal of Molecular Medicine (Review). 85 (11): 1175–1186. doi:10.1007/s00109-007-0221-2. PMID17589818. S2CID10094554.
Ventura A, Kirsch DG, McLaughlin ME, et al. (February 2007). "Restoration of p53 function leads to tumour regression in vivo". Nature. 445 (7128): 661–5. doi:10.1038/nature05541. PMID17251932. S2CID4373520.
Khanna KK, Keating KE, Kozlov S, et al. (December 1998). "ATM associates with and phosphorylates p53: mapping the region of interaction". Nature Genetics. 20 (4): 398–400. doi:10.1038/3882. PMID9843217. S2CID23994762.
Leu JI, Dumont P, Hafey M, et al. (May 2004). "Mitochondrial p53 activates Bak and causes disruption of a Bak-Mcl1 complex". Nature Cell Biology. 6 (5): 443–50. doi:10.1038/ncb1123. PMID15077116. S2CID43063712.
Garkavtsev IV, Kley N, Grigorian IA, et al. (December 2001). "The Bloom syndrome protein interacts and cooperates with p53 in regulation of transcription and cell growth control". Oncogene. 20 (57): 8276–80. doi:10.1038/sj.onc.1205120. PMID11781842. S2CID13084911.
Abramovitch S, Werner H (2003). "Functional and physical interactions between BRCA1 and p53 in transcriptional regulation of the IGF-IR gene". Hormone and Metabolic Research. 35 (11–12): 758–62. doi:10.1055/s-2004-814154. PMID14710355. S2CID20898175.
Chai YL, Cui J, Shao N, et al. (January 1999). "The second BRCT domain of BRCA1 proteins interacts with p53 and stimulates transcription from the p21WAF1/CIP1 promoter". Oncogene. 18 (1): 263–8. doi:10.1038/sj.onc.1202323. PMID9926942. S2CID7462625.
Zhang H, Somasundaram K, Peng Y, et al. (April 1998). "BRCA1 physically associates with p53 and stimulates its transcriptional activity". Oncogene. 16 (13): 1713–21. doi:10.1038/sj.onc.1201932. PMID9582019. S2CID24616900.
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