[1] 耿楼, 顾文莉.蛋白质的翻译后修饰与肿瘤代谢[J].生命的化学, 2020, 40(4):600-606.
GENG L, GU W L.Protein post-translational modifications and tumor metabolism[J].Chemistry of Life, 2020, 40(4):600-606.
[2] 阮班军, 代鹏, 王伟 等.蛋白质翻译后修饰研究进展[J].中国细胞生物学学报, 2014, 36(7):1 027-1 037.
RUAN B J, DAI P, WANG W, et al.Progress on post-translational modification of proteins[J].Chinese Journal of Cell Biology, 2014, 36(7):1 027-1 037.
[3] ZHANG K, TIAN S S, FAN E G.Protein lysine acetylation analysis:Current MS-based proteomic technologies[J].The Analyst, 138(6), 1 628-1 636.
[4] ZHOU B, SHEN Z L, LIU Y S, et al.Proteomic analysis reveals that lysine acetylation mediates the effect of antemortem stress on postmortem meat quality development[J].Food Chemistry, 2019, 293:396-407.
[5] LI Q, LI Z W, LOU A H, et al.Histone acetyltransferase inhibitors antagonize amp-activated protein kinase in postmortem glycolysis[J].Asian-Australasian Journal of Animal Sciences.2017, 30:857-867.
[6] SHEN Q W, MEANS W J, THOMPSON S A, et al.Pre-slaughter transport, AMP-activated protein kinase, glycolysis, and quality of pork loin[J].Meat science, 2006, 74(2):388-395.
[7] WANG T X, LI J, SHAO Y F, et al.The effect of dietary garcinol supplementation on oxidative stability, muscle postmortem glycolysis and meat quality in pigs[J].Meat Science, 2020, 161:107 998.
[8] PHILLIPS D M P.The presence of acetyl groups in histones[J].Biochemical Journal, 1963, 87(2):258-263.
[9] WANG Q J, ZHANG Y K, YANG C, et al.Acetylation of metabolic enzymes coordinates carbon source utilization and metabolic flux[J].Science, 2010, 327(5 968):1 004-1 007.
[10] ZHAO S M, XU W, JIANG W Q, et al.Regulation of cellular metabolism by protein lysine acetylation[J].Science, 2010, 327(5 968):1 000-1 004.
[11] LIN R T, ZHOU X, HUANG W, et al.Acetylation control of cancer cell metabolism[J].Current Pharmaceutical Design, 2014, 20(15):2 627-2 633.
[12] THAO S, ESCALANTE-SEMERENA J C.Control of protein function by reversible Nε-lysine acetylation in bacteria[J].Current Opinion in Microbiology, 2011, 14(2):200-204.
[13] 邹波, 李春保.乙酰化、能量代谢与肉品品质的关联[J].肉类研究, 2019, 33(8):58-64.
ZOU B, LI C B.Association of meat quality with acetylation and energy metabolism[J].Meat Research, 2019, 33(8):58-64.
[14] 吕斌娜, 梁文星.蛋白质乙酰化修饰研究进展[J].生物技术通报, 2015, 31(4):166-174.
LYU B N, LIANG W X.The research progress of protein acetylation[J].Biotechnology Bulletin, 2015, 31(4):166-174.
[15] MARKS P A, RICHON V M, RIFKIND R A, et al.Histone deacetylase inhibitors:Inducers of differentiation or apoptosis of transformed cells[J].Journal of the National Cancer Institute, 2000, 92(15):1 210-1 216.
[16] ALI I, CONRAD R J, VERDIN E.Lysine acetylation goes global:From epigenetics to metabolism and therapeutics[J].Chemical Reviews, 2018, 118(3):1 216-1 252.
[17] KOUZARIDES T.Acetylation:A regulatory modification to rival phosphorylation?[J].Embo Journal, 2000, 19(6):1 176-1 179.
[18] JIANG S W, LIU Y S, SHEN Z L, et al.Acetylome profiling reveals extensive involvement of lysine acetylation in the conversion of muscle to meat[J].Journal of Proteomics, 2019, 205:103 412.
[19] KEMP C M, SENSKY P L, BARDSLEY R G, et al.Tenderness—An enzymatic view[J].Meat Science, 2010, 84(2):248-256.
[20] WULF D M, EMNETT R S, LEHESKA J M, et al.Relationships among glycolytic potential, dark cutting (dark, firm and dry) beef, and cooked beef palatability[J].Journal of Animal Science, 2002, 80(7):1 895-1 903.
[21] 程天赋, 俞龙浩.宰后糖酵解对肉品质影响的研究进展[J].食品研究与开发, 2017, 38(15):219-224.
CHENG T F, YU L H.Research progress on effects of postmortem glycolysis on meat quality[J].Food Research and Development, 2017, 38(15):219-224.
[22] CHEN Z, LUO L, CHEN R F, et al.Acetylome profiling reveals extensive lysine acetylation of the fatty acid metabolism pathway in the diatom Phaeodactylum tricornutum[J].Molecular & cellular proteomics:MCP, 2018, 17(3):399-412.
[23] CHAUHAN S S, ENGLAND E M.Postmortem glycolysis and glycogenolysis:Insights from species comparisons[J].Meat Science, 2018, 144(10):118-126.
[24] 李琼. 赖氨酸ε-氨基乙酰化修饰在宰后肌肉糖酵解中的作用研究[D].长沙:湖南农业大学, 2017.
LI Q.Protein acetylation at lysine ε-amino regulates postmortem muscle glycolysis[D].Changsha:Hunan Agricultural University, 2017.
[25] 李仲文. 蛋白质乙酰化修饰及AMPK对宰后肌肉糖酵解的调控作用[D].西安:西北农林科技大学, 2015.
LI Z W.The role of acetylation and AMPK in postmortem muscle glycolysis[D].Xi'an:Northwest Agriculture and Forestry University, 2015.
[26] SHAKESPEAR M R, IYER A, CHENG C Y, et al.Lysine deacetylases and regulated glycolysis in macrophages[J].Trends in Immunology, 2018, 39(6):473-488.
[27] WANG T X, LI J, SHAO Y F, et al.The effect of dietary garcinol supplementation on oxidative stability, muscle postmortem glycolysis and meat quality in pigs[J].Meat Science, 2020, 161:107 998.
[28] LI Z W, LI X, WANG Z Y, et al.Antemortem stress regulates protein acetylation and glycolysis in postmortem muscle[J].Food Chemistry, 2016, 202:94-98.
[29] JIANG Z H, YANG H M, ZHANG X Y, et al.Histone deacetylase-1 as a prognostic factor and mediator of gastric cancer progression by enhancing glycolysis[J].Human Pathology, 2019, 85:194-201.
[30] BOND S T, HOWLETT K F, KOWALSKI G M, et al.Lysine post-translational modification of glyceraldehyde-3-phosphate dehydrogenase regulates hepatic and systemic metabolism[J].Faseb Journal, 2017, 31(6):2 592-2 602.
[31] BALASUBRAMANYAM K, ALTAF M, VARIER R A, et al.Polyisoprenylated benzophenone, garcinol, a natural histone acetyltransferase inhibitor, represses chromatin transcription and alters global gene expression[J].Journal of Biological Chemistry, 2004, 279(32):33 716-33 726.
[32] WANG T X,YAO W L, SHAO Y F,et al.PCAF fine-tunes hepatic metabolic syndrome, inflammatory disease, and cancer[J].Journal of Cellular and Molecular Medicine, 2018, 22(12):5 787-5 800.
[33] 魏秀丽, 谢小雷, 张春晖.猪宰后肌肉体系中μ-calpain及肌原纤维蛋白理化特性的变化规律[J].中国农业科学, 2015, 48(12):2 428-2 438.
WEI X L, XIE X L, ZHANG C H.The variations in μ-calpain and physico-chemical characteristics of myofibrillar proteins in postmortem porcine muscle[J].Scientia Agricultura Sinica, 2015, 48(12):2 428-2 438.
[34] 周光宏. 畜产品加工学[M].北京:中国农业出版社, 2002.
ZHOU G H.Animal Product Processing Science[M].Beijing:China Agricultural Press, 2002.
[35] VANDENBOOM R.Modulation of skeletal muscle contraction by myosin phosphorylation[J].Comprehensive Physiology,2016, 7(1):171-212.
[36] FUKUDA N, WU Y M, NAIR P, et al.Phosphorylation of titin modulates passive stiffness of cardiac muscle in a titin isoform-dependent manner[J].The Journal of General Physiology, 2005, 125(3):257-271.
[37] YAMASAKI R.Protein kinase a phosphorylates titin's cardiac-specific N2B domain and reduces passive tension in rat cardiac myocytes[J].Circulation Research, 2002, 90(11):1 181-1 188.
[38] SAMANT S A, PILLAI V B, SUNDARESAN N R, et al.distone Deacetylase 3 (HDAC3)-dependent reversible lysine acetylation of cardiac myosin heavy chain isoforms modulates their enzymatic and motor activity[J].Biology Chemistry, 2015, 290(25):15 559-15 569.
[39] GUPTA M P, SAMANT S A, SMITH S H, et al.HDAC4 and PCAF bind to cardiac sarcomeres and play a role in regulating myofilament contractile activity[J].Journal of Biological Chemistry, 2008, 283(15):10 135-10 146.
[40] RYDER D J, JUDGE S M, BEHARRY A W, et al.Identification of the acetylation and ubiquitin-modified proteome during the progression of skeletal muscle atrophy[J].Plos One, 2015, 10(8):e0 136 247.
[41] VISWANATHAN M C, BLICE-BAUM A C, WILLIAM S, et al.Pseudo-acetylation of K326 and K328 of actin disrupts Drosophila melanogaster indirect flight muscle structure and performance[J].Frontiers in Physiology, 2015, 6:116.
[42] 聂作明. 家蚕体相关蛋白乙酰化修饰鉴定及其对蚕丝蛋白合成影响的研究[D].杭州:浙江理工大学, 2015.
NIE Z M.Identification of acetylated proteins in silkworm body and its effects on silk protein synthesis[D].Hangzhou:Zhejiang Sci-Tech University, 2015.
[43] WILLIAM S, MEERA C, VISWANATHAN D, et al.Acetylation of K326 and K328 on actin boosts contractile properties of muscle in vitro and in vivo[J].Biophysical Journal, 2017, 112(3):483a.
[44] 黄峰. 细胞凋亡酶6在鸡肉成熟中的作用[D].南京:南京农业大学, 2009.
HUANG F.The role of caspase-6 in chicken aging[D].Nanjing:Nanjing Agricultural University, 2009.
[45] ZHANG X, PAN D, CAO J, et al.Changes in the major caspases involved in cytoskeletal degradation of goose muscle during prolonged aging[J].Food Research International, 2013, 51(2):603-610.
[46] OUALI A, HERRERA-MENDEZ C H, COULIS G, et al.Meat tenderization and muscle cell death, two highly related events[J].Technologija Mesa, 2007, 48:1-15.
[47] GUPTA S, GOLLAPUDI S.Susceptibility of naive and subsets of memory T cells to apoptosis via multiple signaling pathways[J].Autoimmunity Reviews, 2007, 6(7):476-481.
[48] CHEN H, WANG H, QI J, et al.Chicken breast quality - normal, pale, soft and exudative (PSE) and woody-influences the functional properties of meat batters[J].International Journal of Food science & Technology, 2017, 53(3):654-664.
[49] 李艳莹, 王艳芳, 王晶, 等.西达本胺对人B淋巴瘤细胞株的作用及其机制研究[J].中国实验血液学杂志, 2012, 20(4):893-899.
LI Y Y, WANG Y F, WANG J, et al.Effect of chidamide on human B lymphoma cell lines and its mechanisms[J].Journal of Experimental Hematology, 2012, 20(4):893-899.
[50] 王晓阳. 西达本胺联合硼替佐米对套细胞淋巴瘤株增殖抑制的影响及其相关机制的研究[D].石家庄:河北医科大学, 2017.
WANG X Y.The effection of chidamide combinded with bortezomib on the proliferation and apoptosis in human mantle cell lymphoma cells and related mechanism[D].Shijiazhuang:Hebei Medical University, 2017.
[51] WANG Y Q, LIU H H, LIU X H, et al.Histone acetylation plays an important role in MC-LR-induced apoptosis and cycle disorder in SD rat testicular cells[J].Chemosphere, 2020, 241:125 073.
[52] MARTEL, CÉCILE, WANG Z, et al.VDAC phosphorylation, a lipid sensor influencing the cell fate[J].Mitochondrion, 2014, 19:69-77.
[53] BONORA M, WIECKOWSKI M R, CHINOPOULOS C, et al.Molecular mechanisms of cell death:Central implication of ATP synthase in mitochondrial permeability transition[J].Oncogene, 2015, 34(12):1 475-1 486.
[54] PARK Y H, SEO J H, PARK J H, et al.Hsp70 acetylation prevents caspase-dependent/independent apoptosis and autophagic cell death in cancer cells[J].International Journal of Oncology, 2017, 51(2):573-578.
[55] 吴程程. 乙酰化介导的家蚕Bm30K-3蛋白稳定性机制及抗凋亡功能分析[D].杭州:浙江理工大学, 2016.
WU C C.Stability and anti-apoptosis activity analysis of Bm30K-3 induced by lysine acetylation in Bombyx mori[D].Hangzhou:Zhejiang Sci-Tech University, 2016.
[56] DAI Y, RAHMANI M, DENT P, et al.Blockade of histone deacetylase inhibitor-induced RelA/p65 acetylation and NF-κB activation potentiates apoptosis in human leukemia cells[J].Cancer Research, 2005, 65(1):768.