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Keyword
- 3,4-dihydro-5-[4-(1-piperidinyl) butoxy]-1(2H)-isoquinolinone1
- DPQ1
- HMGB11
- LC31
- light chain 3 protein1
- MC1
- mechanistic target of rapamycin1
- mTOR1
- NER1
- normal human melanocytes1
- nucleotide excision repair1
- PAR1
- PARP11
- poly(adenosine diphosphate-ribose)1
- poly(adenosine diphosphate-ribose) polymerase 11
- qRT-PCR1
- quantitative real-time reverse transcriptase polymerase chain reaction1
- siRNA1
- small interfering RNA1
- xeroderma pigmentosum group A1
- XPA1
Melanoma
1 Results
- Original Article Melanocytes/MelanomaOpen Archive
Xeroderma Pigmentosum Group A Promotes Autophagy to Facilitate Cisplatin Resistance in Melanoma Cells through the Activation of PARP1
Journal of Investigative DermatologyVol. 136Issue 6p1219–1228Published online: February 12, 2016- Rui Ge
- Lin Liu
- Wei Dai
- Weigang Zhang
- Yuqi Yang
- Huina Wang
- and others
Cited in Scopus: 25Xeroderma pigmentosum group A (XPA), a key protein in the nucleotide excision repair pathway, has been shown to promote the resistance of tumor cells to chemotherapeutic drugs by facilitating the DNA repair process. However, the role of XPA in the resistance of melanoma to platinum-based drugs like cisplatin is largely unknown. In this study, we initially found that XPA was expressed at higher levels in cisplatin-resistant melanoma cells than in cisplatin-sensitive ones. Furthermore, the knockdown of XPA not only increased cellular apoptosis but also inhibited cisplatin-induced autophagy, which rendered the melanoma cells more sensitive to cisplatin.