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Diseases associated with API5 include colon [[adenocarcinoma]], and [[cervical cancer]].
API5 functions in nuclear export of mRNA <ref>{{cite journal | vauthors = Bong SM, Bae SH, Song B, Gwak H, Yang SW, Kim S, Nam S, Rajalingam K, Oh SJ, Kim TW, Park S, Jang H, Lee BI | title = Regulation of mRNA Export Through API5 and Nuclear FGF2 Interaction. | journal = Nucleic Acids Res. | doi = 10.1093/nar/gkaa335 | pmid= 32383752 | year=2020| doi-access = free | volume = 48 | pmc = 7293033 | pages = 6340–6352 }} </ref>.
== References==
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* {{cite journal | vauthors = Sutherland HG, Mumford GK, Newton K, Ford LV, Farrall R, Dellaire G, Cáceres JF, Bickmore WA | title = Large-scale identification of mammalian proteins localized to nuclear sub-compartments | journal = Human Molecular Genetics | volume = 10 | issue = 18 | pages = 1995–2011 | date = September 2001 | pmid = 11555636 | doi = 10.1093/hmg/10.18.1995 | doi-access = free }}
* {{cite journal | vauthors = Li Z, Hu CY, Mo BQ, Xu JD, Zhao Y | title = [Effect of beta-carotene on gene expression of breast cancer cells] | journal = Ai Zheng = Aizheng = Chinese Journal of Cancer | volume = 22 | issue = 4 | pages = 380–4 | date = April 2003 | pmid = 12703993 | doi = }}
* {{cite journal | vauthors = Andersen JS, Lam YW, Leung AK, Ong SE, Lyon CE, Lamond AI, Mann M | title = Nucleolar proteome dynamics | journal = Nature | volume = 433 | issue = 7021 | pages = 77–83 | date = January 2005 | pmid = 15635413 | doi = 10.1038/nature03207 | bibcode = 2005Natur.433...77A }}
* {{cite journal | vauthors = Kim JE, Tannenbaum SR, White FM | title = Global phosphoproteome of HT-29 human colon adenocarcinoma cells | journal = Journal of Proteome Research | volume = 4 | issue = 4 | pages = 1339–46 | year = 2005 | pmid = 16083285 | doi = 10.1021/pr050048h }}
* {{cite journal | vauthors = Olsen JV, Blagoev B, Gnad F, Macek B, Kumar C, Mortensen P, Mann M | title = Global, in vivo, and site-specific phosphorylation dynamics in signaling networks | journal = Cell | volume = 127 | issue = 3 | pages = 635–48 | date = November 2006 | pmid = 17081983 | doi = 10.1016/j.cell.2006.09.026 }}
* {{cite journal | vauthors = Morris EJ, Michaud WA, Ji JY, Moon NS, Rocco JW, Dyson NJ | title = Functional identification of Api5 as a suppressor of E2F-dependent apoptosis in vivo | journal = PLoS Genetics | volume = 2 | issue = 11 | pages = e196 | date = November 2006 | pmid = 17112319 | pmc = 1636698 | doi = 10.1371/journal.pgen.0020196 }} {{open access}}
* {{cite journal | vauthors = Han BG, Kim KH, Lee SJ, Jeong KC, Cho JW, Noh KH, Kim TW, Kim SJ, Yoon HJ, Suh SW, Lee S, Lee BI | title = Helical repeat structure of apoptosis inhibitor 5 reveals protein-protein interaction modules | journal = J Biol Chem | volume = 287 | pages = 10727-37 | doi = 10.1074/jbc.M111.317594 | pmc = 3322819 | pmid=22334682 | year=2012}}
* {{cite journal | vauthors = Bong SM, Bae SH, Song B, Gwak H, Yang SW, Kim S, Nam S, Rajalingam K, Oh SJ, Kim TW, Park S, Jang H, Lee BI | title = Regulation of mRNA Export Through API5 and Nuclear FGF2 Interaction. | journal = Nucleic Acids Res. | doi = 10.1093/nar/gkaa335 | pmid= 32383752 | year=2020| doi-access = free | volume = 48 | pmc = 7293033 | pages = 6340–6352 }}
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