1
|
Gansler T, Ganz PA, Grant M, Greene FL,
Johnstone P, Mahoney M, Newman LA, Oh WK, Thomas CR Jr, Thun MJ, et
al: Sixty years of CA: A cancer journal for clinicians. CA Cancer J
Clin. 60:345–350. 2010. View Article : Google Scholar : PubMed/NCBI
|
2
|
Li Q, Zhou S, Jing J, Yang T, Duan S, Wang
Z, Mei Q and Liu L: Oligosaccharide from apple induces apoptosis
and cell cycle arrest in HT29 human colon cancer cells. Int J Biol
Macromol. 57:245–254. 2013. View Article : Google Scholar : PubMed/NCBI
|
3
|
Allgayer H and Fulda S: An introduction to
molecular targeted therapy of cancer. Adv Med Sci. 53:130–138.
2008. View Article : Google Scholar : PubMed/NCBI
|
4
|
Lygerou Z, Christophides G and Seraphin B:
A novel genetic screen for snRNP assembly factors in yeast
identifies a conserved protein, Sad1p, also required for pre-mRNA
splicing. Mol Cell Biol. 19:2008–2020. 1999. View Article : Google Scholar : PubMed/NCBI
|
5
|
Hadjivassiliou H, Rosenberg OS and Guthrie
C: The crystal structure of S. cerevisiae Sad1, a catalytically
inactive deubiquitinase that is broadly required for pre-mRNA
splicing. RNA. 20:656–669. 2014. View Article : Google Scholar : PubMed/NCBI
|
6
|
Makarova OV, Makarov EM and Luhrmann R:
The 65 and 110 kDa SR-related proteins of the U4/U6.U5 tri-snRNP
are essential for the assembly of mature spliceosomes. EMBO J.
20:2553–2563. 2001. View Article : Google Scholar : PubMed/NCBI
|
7
|
van Leuken RJ, Luna-Vargas MP, Sixma TK,
Wolthuis RM and Medema RH: Usp39 is essential for mitotic spindle
checkpoint integrity and controls mRNA-levels of aurora B. Cell
Cycle. 7:2710–2719. 2008. View Article : Google Scholar : PubMed/NCBI
|
8
|
Wen D, Xu Z, Xia L, Liu X, Tu Y, Lei H,
Wang W, Wang T, Song L, Ma C, et al: Important role of SUMOylation
of Spliceosome factors in prostate cancer cells. J Proteome Res.
13:3571–3582. 2014. View Article : Google Scholar : PubMed/NCBI
|
9
|
Wang H, Ji X, Liu X, Yao R, Chi J, Liu S,
Wang Y, Cao W and Zhou Q: Lentivirus-mediated inhibition of USP39
suppresses the growth of breast cancer cells in vitro. Oncol Rep.
30:2871–2877. 2013. View Article : Google Scholar : PubMed/NCBI
|
10
|
Pan Z, Pan H, Zhang J, Yang Y, Liu H, Yang
Y, Huang G, Ni J, Huang J and Zhou W: Lentivirus mediated silencing
of ubiquitin specific peptidase 39 inhibits cell proliferation of
human hepatocellular carcinoma cells in vitro. Biol Res. 48:182015.
View Article : Google Scholar : PubMed/NCBI
|
11
|
An Y, Yang S, Guo K, Ma B and Wang Y:
Reduced USP39 expression inhibits malignant proliferation of
medullary thyroid carcinoma in vitro. World J Surg Oncol.
13:2552015. View Article : Google Scholar : PubMed/NCBI
|
12
|
Sun W, Yao L, Jiang B, Guo L and Wang Q:
Spindle and kinetochore-associated protein 1 is overexpressed in
gastric cancer and modulates cell growth. Mol Cell Biochem.
391:167–174. 2014. View Article : Google Scholar : PubMed/NCBI
|
13
|
Livak KJ and Schmittgen TD: Analysis of
relative gene expression data using real-time quantitative PCR and
the 2(-Delta Delta C(T)) method. Methods. 25:402–408. 2001.
View Article : Google Scholar : PubMed/NCBI
|
14
|
de-Freitas Junior JC and Morgado-Diaz JA:
The role of N-glycans in colorectal cancer progression: Potential
biomarkers and therapeutic applications. Oncotarget. 7:19395–19413.
2016.PubMed/NCBI
|
15
|
Wang L, Lawrence MS, Wan Y, Stojanov P,
Sougnez C, Stevenson K, Werner L, Sivachenko A, DeLuca DS, Zhang L,
et al: SF3B1 and other novel cancer genes in chronic lymphocytic
leukemia. N Engl J Med. 365:2497–2506. 2011. View Article : Google Scholar : PubMed/NCBI
|
16
|
Cazzola M, Rossi M and Malcovati L;
Associazione Italiana per la Ricerca sul Cancro Gruppo Italiano
Malattie Mieloproliferative, : Biologic and clinical significance
of somatic mutations of SF3B1 in myeloid and lymphoid neoplasms.
Blood. 121:260–269. 2013. View Article : Google Scholar : PubMed/NCBI
|
17
|
Salvesen GS and Dixit VM: Caspases:
Intracellular signaling by proteolysis. Cell. 91:443–446. 1997.
View Article : Google Scholar : PubMed/NCBI
|
18
|
Shimizu S, Yoshida T, Tsujioka M and
Arakawa S: Autophagic cell death and cancer. Int J Mol Sci.
15:3145–3153. 2014. View Article : Google Scholar : PubMed/NCBI
|
19
|
Fan TJ, Han LH, Cong RS and Liang J:
Caspase family proteases and apoptosis. Acta Biochim Biophys Sin
(Shanghai). 37:719–727. 2005. View Article : Google Scholar : PubMed/NCBI
|
20
|
Ghavami S, Hashemi M, Ande SR, Yeganeh B,
Xiao W, Eshraghi M, Bus CJ, Kadkhoda K, Wiechec E, Halayko AJ and
Los M: Apoptosis and cancer: Mutations within caspase genes. J Med
Genet. 46:497–510. 2009. View Article : Google Scholar : PubMed/NCBI
|
21
|
Matuo R, Sousa FG, Escargueil AE,
Grivicich I, Garcia-Santos D, Chies JA, Saffi J, Larsen AK and
Henriques JA: 5-Fluorouracil and its active metabolite FdUMP cause
DNA damage in human SW620 colon adenocarcinoma cell line. J Appl
Toxicol. 29:308–316. 2009. View
Article : Google Scholar : PubMed/NCBI
|
22
|
Vousden KH and Lane DP: p53 in health and
disease. Nat Rev Mol Cell Biol. 8:275–283. 2007. View Article : Google Scholar : PubMed/NCBI
|
23
|
Thorenoor N, Faltejskova-Vychytilova P,
Hombach S, Mlcochova J, Kretz M, Svoboda M and Slaby O: Long
non-coding RNA ZFAS1 interacts with CDK1 and is involved in
p53-dependent cell cycle control and apoptosis in colorectal
cancer. Oncotarget. 7:622–637. 2016. View Article : Google Scholar : PubMed/NCBI
|