Journal of Jilin University(Medicine Edition) ›› 2026, Vol. 52 ›› Issue (4): 1179-1186.doi: 10.13481/j.1671-587X.20260431
• Review • Previous Articles
Received:2025-01-06
Accepted:2025-03-27
Online:2026-07-28
Published:2026-07-27
Contact:
Nan LIANG,Hui SUN
E-mail:liangnan2006@jlu.edu.cn;s_h@jlu.edu.cn
CLC Number:
Qian AO,Nan LIANG,Hui SUN. Research progress in regulation of tumor-related signaling pathways by acetylation modification and its potential applications in tumor therapy[J].Journal of Jilin University(Medicine Edition), 2026, 52(4): 1179-1186.
| [1] | ALLFREY V G, FAULKNER R, MIRSKY A E. Acetylation and methylation of histones and their possible role in the regulation of RNA synthesis[J]. Proc Natl Acad Sci U S A, 1964, 51(5): 786-794. |
| [2] | XIA L C, KONG X G, SONG H F, et al. Advances in proteome-wide analysis of plant lysine acetylation[J]. Plant Commun, 2022, 3(1): 100266. |
| [3] | LIU Y X, YANG H, LIU X C, et al. Protein acetylation: a novel modus of obesity regulation[J]. J Mol Med (Berl), 2021, 99(9): 1221-1235. |
| [4] | NARITA T, WEINERT B T, CHOUDHARY C. Functions and mechanisms of non-histone protein acetylation[J]. Nat Rev Mol Cell Biol, 2019, 20(3): 156-174. |
| [5] | SHANG S, LIU J, HUA F. Protein acylation: mechanisms, biological functions and therapeutic targets[J]. Sig Transduct Target Ther, 2022, 7(1): 396. |
| [6] | ZHONG Z X, JIAO Z H, YU F X. The Hippo signaling pathway in development and regeneration[J]. Cell Rep, 2024, 43(3): 113926. |
| [7] | FU M Y, HU Y, LAN T X, et al. The Hippo signalling pathway and its implications in human health and diseases[J]. Sig Transduct Target Ther, 2022, 7(1): 376. |
| [8] | YANG S Y, XU W Z, LIU C, et al. LATS1 K751 acetylation blocks activation of Hippo signalling and switches LATS1 from a tumor suppressor to an oncoprotein[J]. Sci China Life Sci, 2022, 65(1): 129-141. |
| [9] | JIN J Q, ZHANG L, LI X Y, et al. Oxidative stress-CBP axis modulates MOB1 acetylation and activates the Hippo signaling pathway[J]. Nucleic Acids Res, 2022, 50(7): 3817-3834. |
| [10] | TANG W F, LI M, YANGZHONG X T, et al. Hippo signaling pathway and respiratory diseases[J]. Cell Death Discov, 2022, 8(1): 213. |
| [11] | XIE W L, ZHANG Y Q, WANG B Y, et al. Tripartite motif containing 24 regulates cell proliferation in colorectal cancer through YAP signaling[J]. Cancer Med, 2020, 9(17): 6367-6376. |
| [12] | HERQUEL B, OUARARHNI K, DAVIDSON I. The TIF1α-related TRIM cofactors couple chromatin modifications to transcriptional regulation, signaling and tumor suppression[J]. Transcription, 2011, 2(5): 231-236. |
| [13] | ZHANG L W, CHEN H, DING B J, et al. High expression of TRIM24 predicts worse prognosis and promotes proliferation and metastasis of epithelial ovarian cancer[J]. J Ovarian Res, 2022, 15(1): 19. |
| [14] | KIM G, BHATTARAI P Y, LIM S C, et al. Sirtuin 5-mediated deacetylation of TAZ at K54 promotes melanoma development[J]. Cell Oncol, 2024, 47(3): 967-985. |
| [15] | LUO M X, XU Y J, CHEN H F, et al. Advances of targeting the YAP/TAZ-TEAD complex in the hippo pathway for the treatment of cancers[J]. Eur J Med Chem, 2022, 244: 114847. |
| [16] | HU L F, CHEN W, QIAN A R, et al. Wnt/β-catenin signaling components and mechanisms in bone formation, homeostasis, and disease[J]. Bone Res, 2024, 12(1): 39. |
| [17] | YU X M, WANG M H, WU J J, et al. ZNF326 promotes malignant phenotype of glioma by up-regulating HDAC7 expression and activating Wnt pathway[J]. J Exp Clin Cancer Res, 2020, 39(1): 14. |
| [18] | LI G P, CHOI J E, KRYCZEK I, et al. Intersection of immune and oncometabolic pathways drives cancer hyperprogression during immunotherapy[J]. Cancer Cell, 2023, 41(2): 304-322. |
| [19] | WANG H, QIU Y Q, ZHANG H H, et al. Histone acetylation by HBO1 (KAT7) activates Wnt/β-catenin signaling to promote leukemogenesis in B-cell acute lymphoblastic leukemia[J]. Cell Death Dis, 2023, 14(8): 498. |
| [20] | GLAVIANO A, FOO A S C, LAM H Y, et al. PI3K/AKT/mTOR signaling transduction pathway and targeted therapies in cancer[J]. Mol Cancer, 2023, 22(1): 138. |
| [21] | WEI E D, MITANOSKA A, O’BRIEN Q, et al. Pharmacological targeting of P300/CBP reveals EWS: FLI1-mediated senescence evasion in Ewing sarcoma[J]. Mol Cancer, 2024, 23(1): 222. |
| [22] | NIU J, LI W, LIANG C, et al. EGF promotes DKK1 transcription in hepatocellular carcinoma by enhancing the phosphorylation and acetylation of histone H3[J]. Sci Signal, 2020, 13(657): eabb5727. |
| [23] | DANG W, BIAN R, FAN Q Q, et al. KIF11 promotes cell proliferation via ERBB2/PI3K/AKT signaling pathway in gallbladder cancer[J]. Int J Biol Sci, 2021, 17(2): 514-526. |
| [24] | GAO W T, LU J J, YANG Z T, et al. Mitotic functions and characters of KIF11 in cancers[J]. Biomolecules, 2024, 14(4): 386. |
| [25] | GUO X H, ZHOU L, WU Y N, et al. KIF11 as a potential pan-cancer immunological biomarker encompassing the disease staging, prognoses, tumor microenvironment, and therapeutic responses[J]. Oxid Med Cell Longev, 2022, 2022: 2764940. |
| [26] | ZHENG Y, WU C, YANG J M, et al. Insulin-like growth factor 1-induced enolase 2 deacetylation by HDAC3 promotes metastasis of pancreatic cancer[J]. Sig Transduct Target Ther, 2020, 5(1): 53. |
| [27] | SHI J, MIAO D J, LV Q Y, et al. ENO2 as a biomarker regulating energy metabolism to promote tumor progression in clear cell renal cell carcinoma[J]. Biomedicines, 2023, 11(9): 2499. |
| [28] | SHI Q M, XUE C, ZENG Y F, et al. Notch signaling pathway in cancer: from mechanistic insights to targeted therapies[J]. Sig Transduct Target Ther, 2024, 9(1): 128. |
| [29] | ZHOU B H, LIN W L, LONG Y L, et al. Notch signaling pathway: architecture, disease, and therapeutics[J]. Sig Transduct Target Ther, 2022, 7(1): 95. |
| [30] | EDELMANN J. NOTCH1 Signalling: a key pathway for the development of high-risk chronic lymphocytic leukaemia[J]. Front Oncol, 2022, 12: 1019730. |
| [31] | FERRANTE F, GIAIMO B D, BARTKUHN M, et al. HDAC3 functions as a positive regulator in Notch signal transduction[J]. Nucleic Acids Res, 2020, 48(7): 3496-3512. |
| [32] | SUBRAMANI P, NAGARAJAN N, MARIARAJ S, et al. Knockdown of sirtuin6 positively regulates acetylation of DNMT1 to inhibit NOTCH signaling pathway in non-small cell lung cancer cell lines[J]. Cell Signal, 2023, 105: 110629. |
| [33] | HUANG Y H, CAI K, XU P P, et al. CREBBP/EP300 mutations promoted tumor progression in diffuse large B-cell lymphoma through altering tumor-associated macrophage polarization via FBXW7-NOTCH-CCL2/CSF1 axis[J]. Sig Transduct Target Ther, 2021, 6(1): 10. |
| [34] | YEH C H, BELLON M, NICOT C. FBXW7: a critical tumor suppressor of human cancers[J]. Mol Cancer, 2018, 17(1): 115. |
| [35] | HE Z W, WANG J, XU J, et al. Dynamic regulation of KIF15 phosphorylation and acetylation promotes focal adhesions disassembly in pancreatic cancer[J]. Cell Death Dis, 2022, 13(10): 896. |
| [36] | WEI R F, ZHU Y, ZHANG Y J, et al. AIMP1 promotes multiple myeloma malignancy through interacting with ANP32A to mediate histone H3 acetylation[J]. Cancer Commun, 2022, 42(11): 1185-1206. |
| [37] | YANG X J, LU B, SUN X Q, et al. ANP32A regulates histone H3 acetylation and promotes leukemogenesis[J]. Leukemia, 2018, 32(7): 1587-1597. |
| [38] | BI L, REN Y D, FENG M X, et al. HDAC11 regulates glycolysis through the LKB1/AMPK signaling pathway to maintain hepatocellular carcinoma stemness[J]. Cancer Res, 2021, 81(8): 2015-2028. |
| [39] | SHIMADA T, YABUKI Y, NOGUCHI T, et al. The distinct roles of LKB1 and AMPK in p53-dependent apoptosis induced by cisplatin[J]. Int J Mol Sci, 2022, 23(17): 10064. |
| [40] | WANG L, BAI Y N, CAO Z M, et al. Histone deacetylases and inhibitors in diabetes mellitus and its complications[J]. Biomedecine Pharmacother, 2024, 177: 117010. |
| [41] | SHANMUKHA K D, PALUVAI H, LOMADA S K, et al. Histone deacetylase (HDACs) inhibitors: Clinical applications[J]. Prog Mol Biol Transl Sci, 2023, 198: 119-152. |
| [42] | LI Y X, SETO E. HDACs and HDAC inhibitors in cancer development and therapy[J]. Cold Spring Harb Perspect Med, 2016, 6(10): a026831. |
| [43] | PARVEEN R, HARIHAR D, CHATTERJI B P. Recent histone deacetylase inhibitors in cancer therapy[J]. Cancer, 2023, 129(21): 3372-3380. |
| [44] | ZHU M, HAN Y L, GU T N, et al. Class I HDAC inhibitors enhance antitumor efficacy and persistence of CAR-T cells by activation of the Wnt pathway[J]. Cell Rep, 2024, 43(4): 114065. |
| [45] | KONG Y J, REN W L, FANG H, et al. Histone deacetylase inhibitors (HDACi) promote KLF5 ubiquitination and degradation in basal-like breast cancer[J]. Int J Biol Sci, 2022, 18(5): 2104-2115. |
| [46] | LUO Y, CHEN C S. The roles and regulation of the KLF5 transcription factor in cancers[J]. Cancer Sci, 2021, 112(6): 2097-2117. |
| [47] | LIU S N, ZOU Q, CHEN J P, et al. Targeting enhancer reprogramming to mitigate MEK inhibitor resistance in preclinical models of advanced ovarian cancer[J]. J Clin Invest, 2021, 131(20): e145035. |
| [48] | SAISOMBOON S, KARIYA R, MAHALAPBUTR P, et al. Augmented global protein acetylation diminishes cell growth and migration of cholangiocarcinoma cells[J]. Int J Mol Sci, 2024, 25(18): 10170. |
| [49] | MANNA P R, MOLEHIN D, AHMED A U, et al. Acetylation of steroidogenic acute regulatory protein sensitizes 17β-estradiol regulation in hormone-sensitive breast cancer cells[J]. Int J Mol Sci, 2024, 25(16): 8732. |
| [50] | NEBBIOSO A, CARAFA V, CONTE M, et al. C-myc modulation and acetylation is a key HDAC inhibitor target in cancer[J]. Clin Cancer Res, 2017, 23(10): 2542-2555. |
| [51] | LIU X X, CHEN Y W, LI Y, et al. A novel class I HDAC inhibitor, AW01178, inhibits epithelial-mesenchymal transition and metastasis of breast cancer[J]. Int J Mol Sci, 2024, 25(13): 7234. |
| [52] | PARK E Y, WOO Y, KIM S J, et al. Anticancer effects of a new SIRT inhibitor, MHY2256, against human breast cancer MCF-7 cells via regulation of MDM2-p53 binding[J]. Int J Biol Sci, 2016, 12(12): 1555-1567. |
| [53] | DE U, SON J Y, SACHAN R C, et al. A new synthetic histone deacetylase inhibitor, MHY2256, induces apoptosis and autophagy cell death in endometrial cancer cells via p53 acetylation[J]. Int J Mol Sci, 2018, 19(9): 2743. |
| [54] | BAI M, CUI M Q, LI M Y, et al. Discovery of a novel HDACi structure that inhibits the proliferation of ovarian cancer cells in vivo and in vitro [J]. Int J Biol Sci, 2021, 17(13): 3493-3507. |
| [55] | SU W J, ZENG L F, CHEN W D. Moscatilin suppresses the breast cancer both in vitro and in vivo by inhibiting HDAC3[J]. Dose Response, 2021, 19(1): 15593258211001251. |
| [1] | Feida YAN,Mingdi CHEN,Zhiwei LIANG. Inhibitory effect of TPX2 silencing on immune escape in non-small cell lung cancer A549 cells by regulating Wnt/β-catenin signaling pathway [J]. Journal of Jilin University(Medicine Edition), 2026, 52(4): 1011-1021. |
| [2] | Rui LI,Xiaoyan HAO,Liu YANG,Jiayun LIU,Mu HE. Construction and validation of machine learning-based prediction models for esophageal cancer using routine clinical laboratory data [J]. Journal of Jilin University(Medicine Edition), 2026, 52(4): 1086-1095. |
| [3] | Pingxu AN,Qi HUANG,Xinyu HONG. Research progress in immunotherapy and anti-angiogenic therapy under pituitary adenoma tumor microenvironment [J]. Journal of Jilin University(Medicine Edition), 2026, 52(4): 1170-1178. |
| [4] | Gengfei CAO, SHAYA·Mahati,Junpeng GU,Weizheng JI, ASIHAER·Hasimu,Weixin REN. Differences in immune microenvironment between DEB-TACE and c-TACE in treatment of hepatocellular carcinoma and mechanism of TRADD-mediated Th17 differentiation [J]. Journal of Jilin University(Medicine Edition), 2026, 52(3): 764-780. |
| [5] | Changfeng LIU,Guangjun JIN,Yonggang WANG. Primary renal angiosarcoma with multiple abdominal haemorrhages: A case repert and literature review [J]. Journal of Jilin University(Medicine Edition), 2026, 52(3): 821-827. |
| [6] | Qiuping SU,Lei XING,Wei ZHANG,Shan JIANG,Yangyang ZHAO,Fangfang CHEN. Research progress in anti-tumor mechanism of berberine and application of its novel nano-delivery system in tumor therapy [J]. Journal of Jilin University(Medicine Edition), 2026, 52(3): 863-871. |
| [7] | Yang YU,Sheyu YE,Kexin WEI,Zhicheng WANG. Research progress in formation mechanism of tumor radioresistance and inhibitory effect of low-dose radiotherapy combination with novel sensitization strategies on tumor radioresistance [J]. Journal of Jilin University(Medicine Edition), 2026, 52(3): 872-880. |
| [8] | Xiqian ZHANG,Zhibo DANG,Yunan DU,Pei WU,Hang XIE,Gaofeng TAN. Inhibitory effect of Chaiqi Yigan formula on malignant biological behaviors of liver cancer HepG2 cells by regulating macrophage polarization [J]. Journal of Jilin University(Medicine Edition), 2026, 52(2): 398-409. |
| [9] | Yu ZHAO,Xiaoshuang HE,Xiaoyin DONG,Fengyi GAO,Jiageng HE. Regulatory effect of lncRNA urothelial carcinoembryonic antigen 1 on anoikis in human gastrointestinal stromal tumor cells and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2026, 52(2): 429-439. |
| [10] | Ruihan GE,Chen LI,Shengpeng WANG,Yang LU,Caixia TAN,Haotian CUI,Xinmin WANG,Le ZHANG. Bioinformatic analysis on regulatory mechanism of MAPK-Mcl-1 signaling pathway and macrophage polarization during Bacillus Calmette-Guérin infection and its experimental validation [J]. Journal of Jilin University(Medicine Edition), 2026, 52(2): 440-450. |
| [11] | Shuangji LI,He SHI,Yiwen QIN,Xiang LI,Yuyang LI,Weiwei LIU,Jia LI. Desmoplastic fibroma of mandible: A case report and literature review [J]. Journal of Jilin University(Medicine Edition), 2026, 52(1): 246-251. |
| [12] | Dongxin JIANG, Yunqian LI. Research progress in clinical diagnosis and treatment of oligodendroglioma [J]. Journal of Jilin University(Medicine Edition), 2026, 52(1): 272-280. |
| [13] | Luyao WANG,Chenxi ZHAO,Jincheng DU,Linlin LIU. Research progress in effect of Toll-like receptor 7/8 on occurrence and development of tumor [J]. Journal of Jilin University(Medicine Edition), 2026, 52(1): 264-271. |
| [14] | Zhongzheng LIU,Shubo LIAN,Wenxuan FENG,Xin WEN,Hanyu LIU,Wei HE. Prometive effect of knockdown of KIF3B gene on autophagy in mouse embryonic palatal mesenchymal cells by inhibiting Shh signaling pathway [J]. Journal of Jilin University(Medicine Edition), 2025, 51(6): 1445-1451. |
| [15] | Qu ZHENG,Baoqiang DONG,Xingxing LIN,Xuefeng GUAN,Yu ZHANG,Chaojie WANG,Yiyan Han. Effect of acupuncture on differentiation and apoptosis of quadriceps muscle satellite cells in knee osteoarthritis model rats and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2025, 51(6): 1475-1486. |
|
||
