赵玉政

通讯地址:上海市徐汇区梅陇路130号;邮编:200237

【个人简介】:

赵玉政,教授,博士生导师,北京协和医院博士生导师,上海市细胞代谢光遗传学技术前沿科学研究基地主任,中国医学科学院细胞代谢监测成像新技术创新单元主任,教育部国家级高层次人才(2021),国家重点研发计划首席科学家(2019),教育部国家级青年人才(2017),国家优秀青年科学基金获得者(2017),国家自然科学基金创新研究群体核心成员,中国细胞生物学学会细胞代谢专业委员会委员,中国生物化学与分子生物学会代谢专业委员会委员,中国细胞生物学学会衰老细胞生物学专业委员会委员,中国老年学和老年医学学会抗衰老分会委员,中国老年学和老年医学学会老年病学分会衰老基础医学专家委员会常务委员,中国抗癌协会肿瘤代谢专业委员会委员,中国医药生物技术协会神经修复与再生专业委员会委员,中国衰老标志物研究联合体专家委员会委员,中国研究型医院学会过敏医学专业委员会副主任委员,长三角现代产业学院协同育人联盟生物医药专家委员会副主任委员,上海市生物化学与分子生物学学会副理事长,上海市细胞生物学学会理事,上海市产医融合战略咨询委员会委员,上海市产医融合战略咨询委员会肿瘤治疗专业委员会委员等。

【研究方向】:

1、细胞代谢监测成像新技术开发

2、细胞代谢时空调控新机制研究

【研究生招生与博士后招聘】:

本实验室研究对象涉及基因、蛋白质、细菌、哺乳动物细胞、线虫、斑马鱼、果蝇、鼠、大动物和临床医学样本等,研究领域涉及医学、药学、药理学、细胞生物学、生物化学与分子生物学、合成生物学、光遗传学、化学遗传学、化学生物学等。我们热忱欢迎有志于从事细胞代谢研究、人类疾病诊断、创新药物开发的同学或博士加盟本实验室。

【代表性论文】(*通讯作者):

1.Li,R.,Li,Y.,Jiang,K.,Zhang,L.,Li,T.,Zhao,A.,Zhang,Z.,Xia,Y.,Ge,K.,Chen,Y.,Wang,C.,Tang,W.,Liu,S.,Lin,X.,Song,Y.,Mei,J.,Xiao,C.,Wang,A.,Zou,Y.,Li,X.,Chen,X.,Ju,Z.,Jia,W.,Loscalzo,J.,Sun,Y.,Fang,W.*,Yang,Y.*,ZhaoY.*.Lightingupargininemetabolismrevealsitsfunctionaldiversityinphysiologyandpathology.CellMetabolism,2024,online.

3.He,J.,Wang,A.,Zhao,Q.,Zou,Y.,Zhang,Z.,Sha,N.,Hou,G.,Zhou,B.,Yang,Y.,Chen,T.,Zhao,Y.*,Jiang,Y.*.RNAiscreensidentifyHES4asaregulatorofredoxbalancesupportingpyrimidinesynthesisandtumorgrowth.NatureStructural&MolecularBiology,2024,31(9),1413-1425.

4.Zhao,Y.*,Jiang,Y.*.HES4controlsredoxbalanceandsupportspyrimidinesynthesisandtumorgrowth.NatureStructural&MolecularBiology,2024,31(9),1315-1316.

5.Li,X.,Zhang,Y.,Xu,L.,Wang,A.,Zou,Y.,Li,T.,Huang,L.,Chen,W.,Liu,S.,Jiang,K.,Zhang,X.,Wang,D.,Zhang,L.,Zhang,Z.,Zhang,Z.,Chen,X.,Jia,W.,Zhao,A.,Yan,X.,Zhou,H.,Zhu,L.,Ma,X.,Ju,Z.,Jia,W.,Wang,C.*,Loscalzo,J.,Yang,Y.*,Zhao,Y.*.Ultrasensitivesensorsrevealthespatiotemporallandscapeoflactatemetabolisminphysiologyanddisease.CellMetabolism,2023,35(1),200-211.

6.Dou,X.,Fu,D.,Long,Q.,Liu,S.,Zou,Y.,Fu,D.,Xu,Q.,JiangZ.,Ren,X.,Zhang,G.,WeiX.,LiQ.,Campisi,J.,Zhao,Y.*,SunY.*.PDK4-dependenthypercatabolismandlactateproductionofsenescentcellspromotescancermalignancy.NatureMetabolism,2023,5,1887-1910.

7.Jia,M.,Yue,X.,Sun,W.,Zhou,Q.,Chang,C.,Gong,W.,Feng,J.,Li,X.,Zhan,R.,Mo,K.,Zhang,L.,Qian,Y.,Sun,Y.,Wang,A.,Zou,Y.,Chen,W.,Li,Y.,Huang,L.,Yang,Y.*,Zhao,Y.*,Cheng,X.*.ULK1-mediatedmetabolicreprogrammingregulatesVps34lipidkinaseactivitybyitslactylation.ScienceAdvances,2023,9,eadg4993.

8.Huang,D.,Zhang,C.,Xiao,M.,Li,X.,Chen,W.,Jiang,Y.,Yuan,Y.,Zhang,Y.,Zou,Y.,Deng,L.,Wang,Y.,Sun,Y.,Dong,W.,Zhang,Z.,Xie,L.,Yu,Z.,Chen,C.,Liu,L.,Wang,J.,Yang,Y.*,Yang,J.*,Zhao,Y.*,Zheng,J.*.RedoxmetabolismmaintainstheleukemogeniccapacityanddrugresistanceofAMLcells.PNAS,2023,120(13),e2210796120.

9.Chen,C.*,Lai,X.,Xie,L.,Yu,Z.,Dan,S.,Jiang,Y.,Chen,W.,Liu,L.,Yang,Y.,Zhang,Y.,Huang,D.*,Zhao,Y.*,ZhengJ.*.NADPHmetabolismdeterminestheleukemogeniccapacityanddrugresistanceofAMLcells.CellReports,2022,39(1),110607.

10.Ma,C.,ZhengK.,Jiang,K.,Zhao,Q.,Sha,N.,Wang,W.,Yan,M.,Chen,T.,Zhao,Y.*,Jiang,Y.*.ThealternativeactivityofnuclearPHGDHcontributestotumorgrowthundernutrientstress.NatureMetabolism,2021,3(10),1357-1371.

11.Chen,C.,HaoX.,LaiX.,LiuL.,ZhuJ.,ShaoH.,HuangD.,GuH.,ZhangT.,YuZ.,XieL.,ZhangX.,YangY.,XuJ.*,ZhaoY.*,LuZ.*,ZhengJ.*.OxidativephosphorylationenhancestheleukemogeniccapacityandresistancetochemotherapyofB-cellacutelymphoblasticleukemia.ScienceAdvances,2021,7,eabd6280.

12.Zou,Y.,Wang,A.,Huang,L.,Zhu,X.,Hu,Q.,Zhang,Y.,Chen,X.,Li,F.,Wang,Q.,Wang,H.,Liu,R.,Zuo,F.,Li,T.,Yao,J.,Qian,Y.,Shi,M.,Yue,X.,Chen,W.,Zhang,Z.,Wang,C.,Zhou,Y.,Zhu,L.,Ju,Z.,Loscalzo,J.,Yang,Y.*,Zhao,Y.*.IlluminatingNAD+metabolisminlivecellsandinvivousingageneticallyencodedfluorescentsensor.DevelopmentalCell,2020,53(2),240-252.

13.Gu,H.,Chen,C.,Hao,X.,Su,N.,Huang,Dan.,Zou,Y.,Lin,S.,Chen,X.,Zheng,D.,Liu,L.,Yu,Z.,Xie,L.,Zhang,Y.,He,X.,Lai,X.,Zhang,X.,Chen,G.,Zhao,Y.*,Yang,Y.*,Loscalzo,J.,Zheng,J.*.MDH1-mediatedmalate-aspartateNADHshuttlemaintainstheactivitylevelsoffetalliverhematopoieticstemcells.Blood,2020,136(5),553-571.

14.Zou,Y.,Wang,A.,Shi,M.,Chen,X.,Liu,R.,Li,T.,Zhang,C.,Zhang,Z.,Zhu,L.,Ju,Z.,Loscalzo,J.,Yang,Y.*,Zhao,Y.*.Analysisofredoxlandscapesanddynamicsinlivingcellsandinvivousinggeneticallyencodeduorescentsensors.NatureProtocols,2018,13(10),2362-2386.

15.Tao,R.#,Zhao,Y.#,Chu,H.#,Wang,A.,Zhu,J.,Chen,X.,Zou,Y.,Shi,M.,Liu,R.,Su,N.,Du,J.,Zhou,H.,Zhu,L.,Qian,X.,Liu,H.,Loscalzo,J.,andYang,Y.GeneticallyencodedfluorescentsensorsrevealdynamicregulationofNADPHmetabolism.NatureMethods,2017,14(7),720-728.

16.Zhao,Y.,Wang,A.,Zou,Y.,Su,N.,Loscalzo,J.,andYang,Y.InvivomonitoringofcellularenergymetabolismusingSoNar,ahighlyresponsivesensorforNAD+/NADHredoxstate.NatureProtocols,2016,11(8),1345-1359.(CoverStory)

17.Zhao,Y.,Hu,Q.,Cheng,F.,Su,N.,Wang,A.,Zou,Y.,Hu,H.,Chen,X.,Zhou,H.,Huang,X.,Yang,K.,Zhu,Q.,Wang,X.,Yi,J.,Zhu,L.,Qian,X.,Chen,L.,Tang,Y.,Loscalzo,J.,andYang,Y.SoNar,ahighlyresponsiveNAD+/NADHsensor,allowshigh-throughputmetabolicscreeningofanti-tumoragents.CellMetabolism,2015,21(5),777-789.

18.Zhao,Y.,Jin,J.,Hu,Q.,Zhou,H.M.,Yi,J.,Yu,Z.,Xu,L.,Wang,X.,Yang,Y.,andLoscalzo,J.GeneticallyencodedfluorescentsensorsforintracellularNADHdetection.CellMetabolism,2011,14(4),555-566.

【综述著作】(*通讯作者):

1.Zhang,Z.,Chen,C.,Li,X.,Zheng,J.*,Zhao,Y.*.Regulationofleukemogenesisviaredoxmetabolism.TrendsinCellBiology,2024,34(11),928-941.

2.Li,X.*,Wen,X.,Tang,W.,Wang,C.,Chen,Y.,Yang,Y.,Zhang,Z.*,Zhao,Y.*.Elucidatingthespatiotemporaldynamicsofglucosemetabolismwithgeneticallyencodedfluorescentbiosensors.CellReportsMethods,2024,4(11),100904.

4.RenJ.,SongM.,ZhangW.,CaiJ.,CaoF.,CaoZ.,ChanP.,ChenC.,ChenG.,ChenH.,ChenJ.,ChenX.,CiW.,DingB.,DingQ.,GaoF.,GaoS.,HanJ.,HeQ.,HuangK.,JuZ.,KongQ.,LiJ.,LiJ.,LiJ.,LiX.,LiuB.,LiuF.,LiuJ.,LiuL.,LiuQ.,LiuQ.,LiuX.,LiuY.,LuoX.,MaS.,MaX.,MaoZ.,NieJ.,PengY.,QuJ.,RenR.,SongW.,SongyangZ.,SunL.,SunY.E.,SunY.,TianM.,TianX.,TianY.,WangJ.,WangS.,WangS.,WangW.,WangX.,WangX.,WangY.,WangY.,WongC.,XiangA.P.,XiaoY.,XiaoZ.,XieZ.,XiongW.,XuD.,YangZ.,YeJ.,YuW.,YueR.,ZhangC.,ZhangH.,ZhangL.,ZhangX.,ZhangY.,ZhangY.,ZhangZ.,ZhaoT.,ZhaoY.,ZhouZ.,ZhuD.,ZouW.,PeiG.,LiuG.TheAgingBiomarkerConsortiumrepresentsaneweraforagingresearchinChina.NatureMedicine,2023,29,pages2162–2165.

5.Chen,W.,Liu,S.,Yang,Y.,Zhang,Z.*,Zhao,Y.*.SpatiotemporalMonitoringofNAD+MetabolismwithFluorescentBiosensors.MechanismsofAgeingandDevelopment,2022,204,111657.

6.Li,T.,Zou,Y.,Liu,S.,Yang,Y.,Zhang,Z.*,Zhao,Y.*.MonitoringNAD(H)andNADP(H)dynamicsduringorganismaldevelopmentwithgeneticallyencodedfluorescentbiosensors.CellRegeneration,2022,11,5.

7.Zhang,Z.,Cheng,X.,Zhao,Y.*,Yang,Y.*.Lightinguplive-cellandinvivocentralcarbonmetabolismwithgeneticallyencodedfluorescentsensors.AnnualReviewofAnalyticalChemistry,2020,13,293-314.

8.Zhang,Z.,Chen,W.,Zhao,Y.*,Yang,Y.*.Spatiotemporalimagingofcellularenergymetabolismwithgenetically-encodedfluorescentsensorsinbrain.NeuroscienceBulletin,2018,34(5),875-886.

9.Zhao,Y.*,Zhang,Z.,Zou,Y.,Yang,Y.*.Visualizationofnicotineadeninedinucleotideredoxhomeostasiswithgeneticallyencodedfluorescentsensors,Antioxidants&RedoxSignaling,2018,28(3),213-229.

10.Zhao,Y.*,Zhang,Z.,Yang,Y.*.Monitoringintracellularredoxmetabolismwithgeneticallyencodedfluorescentsensors.ScientiaSinicaVitae,2017,47:508-521.

11.Zhao,Y.*,Yang,Y.*.Real-timeandhigh-throughputanalysisofmitochondrialmetabolicstatesinlivingcellsusinggeneticallyencodedNAD+/NADHsensors.FreeRadicalBiology&Medicine,2016,100,43-52.

12.Zhao,Y.,Yang,Y.*.ProfilingmetabolicstateswithgeneticallyencodedfluorescentbiosensorsforNADH.CurrentOpinioninBiotechnology,2015,31,86-92.

13.Zhao,Y.,Yang,Y.,andLoscalzo,J.Real-TimeAssessmentoftheMetabolicProfileofLivingCellswithGeneticallyEncodedNADHSensors.MethodsinEnzymology,2014,542,349-367.(ISBN:978-0-12-416618-9)

【部分合作论文】:

1.ZuoF,JiangL,SuN,ZhangY,BaoB,WangL,ShiY,YangH,HuangX,LiR,ZengQ,ChenZ,LinQ,ZhuangY,ZhaoY,ChenX,ZhuL,YangY.ImagingthedynamicsofmessengerRNAwithabrightandstablegreenfluorescentRNA.NatureChemicalBiology,2024,20(10),1272-1281.

2.ZouJ,JiangK,ChenY,MaY,XiaC,DingW,YaoM,LinY,ChenY,ZhaoY*,GaoF*.Tofacitinibcitratecoordination-baseddual-responsive/scavengenanoplatformtowardregulatecolonicinflammatorymicroenvironmentforrelievingcolitis.AdvancedHealthcareMaterials,2024,2401869.

3.BaiL,WangY,WangK,ChenX,ZhaoY,LiuC,QuX.MateriobiomodulatedROStherapyfordenovohairgrowth.AdvancedMaterials,2024,36,2311459.

4.WengL,TangW,WangX,GongY,LiuC,HongN,TaoY,LiK,LiuS,JiangW,LiY,YaoK,ChenL,HuangH,ZhaoY,HuZ,LuY,YeH,DuX,ZhouH,LiP,ZhaoT.Surplusfattyacidsynthesisincreasesoxidativestressinadipocytesandinduceslipodystrophy.NatureCommunications,2024,15,133.

5.LiJ,HouW,ZhaoQ,HanW,CuiH,XiaoS,ZhuL,QuJ,LiuX,CongW,ShenJ,ZhaoY,GaoS,HuangG,KongQ.LactateregulatesmajorzygoticgenomeactivationbyH3K18lactylationinmammals.NationalScienceReview,2024,11,nwad295.

6.JiangL,XieX,SuN,ZhangD,ChenX,XuX,ZhangB,HuangK,YuJ,FangM,BaoB,ZuoF,YangL,ZhangR,LiH,HuangX,ChenZ,ZengQ,LiuR,LinQ,ZhaoY,RenA,ZhuL,YangY.LargeStokesshiftfluorescentRNAsfordual-emissionfluorescenceandbioluminescenceimaginginlivecells.NatureMethods,2023,20,1563-1572.

7.ZhangD.,ChenZ.,DuZ.,BaoB.,SuN.,ChenX.,GeY.,LinQ.,YangL.,HuaY.,WangS.,HuaX.,ZuoF.,LiN.,LiuR.,JiangL.,BaoC.,ZhaoY.,LoscalzoJ.,YangY.,ZhuL.DesignofapaletteofSNAP-tagmimicsoffluorescentproteinsandtheiruseascellreporters.CellDiscovery,2023,9,56.

8.SunH.,ZhangZ.,LiT.,LiTing,ChenW.,PanT.,FangS.,LiuC.,ZhangY.,WangL.,FengG.,LiW.,ZhouQ.*,ZhaoY.*.Live-cellimagingrevealsredoxmetabolicreprogrammingduringzygoticgenomeactivation.JournalofCellularPhysiology,2023,238(9),2039-2049.

9.HeM.,SunYu.,ChengY.,WangJ.,ZhangM.,SunR.,HouX.,XuJ.,HeH.,WangH.,YuanZ.,LanM.,ZhaoY.,YangY.,ChenX.,GaoF.Spatiotemporallycontrollablediphtherintransgenesystemandneoantigenimmunotherapy.JournalofControlledRelease,2023,355,538-551

10.FangM.,LiH.,XieX.,WangH.,JiangY.,LiT.,ZhangB.,JiangX.,CaoY.,ZhangR.,ZhangD.,ZhaoY.,ZhuL.,ChenX.,YangY.ImagingintracellularmetaboliteandproteinchangesinlivemammaliancellswithbrightfluorescentRNA-basedgeneticallyencodedsensors.BiosensorsandBioelectronics,2023,235,115411.

11.Liu,R.,Yang,J.,Yao,J.,Zhao,Z.,He,W.,Su,N.,Zhang,Z.,Zhang,C.,Zhang,Z.,Cai,H.,Zhu,L.,Zhao,Y.,Quan,S.,Chen,X.,Yang.Y.OptogeneticcontrolofRNAfunctionandmetabolismusingengineeredlight-switchableRNA-bindingprotein.NatureBiotechnology,2022,40,779-786.

12.ZhaoJ.,YaoK.,YuH.,ZhangL.,XuY.,ChenL.,SunZ.,ZhuY.,ZhangC.,QianY.,JiS.,PanH.,ZhangM.,ChenJ.,CorreiaC.,WeiskittelT.,LinD.W.,ZhaoY.,ChandrasekaranS.,FuX.,ZhangD.,FanH.Y.,XieW.,LiH.,HuZ.,ZhangJ.Metabolicremodellingduringearlymouseembryodevelopment.NatureMetabolism,2021,3,1372-1384.

13.HeX.,WanJ.,YangX.,ZhangX.,HuangD.,LiX.,ZouY.,ChenC.,YuZ.,XieL.,ZhangY.,LiuL.,LiS.,ZhaoY.,ShaoH.,YuY.,ZhengJ.BonemarrownicheATPlevelsdetermineleukemia-initiatingcellactivityviaP2X7inleukemicmodels.JournalofClinicalInvestigation,2021,131(4),e140242.

14.LiT.,ChenX.,QianY.,ShaoJ.,LiX.,LiuS,ZhuL.,ZhaoY.,YeH.,Yang.Y.AsyntheticBRET-basedoptogeneticdeviceforpulsatiletransgeneexpressionenablingglucosehomeostasisinmice.NatureCommunications,2021,12,615.

15.Liu,K.,Guo,C.,Lao,Y.,Yang,J.,Chen,F.,Zhao,Y.,Yang,Y.,Yang,J.,Yi,J.Afine-tuningmechanismunderlyingself-controlforautophagy:deSUMOylationofBECN1bySENP3.Autophagy,2020,16(6),975-990.

16.Li,X.,Zhang,C.,Xu,X.,Miao,J.,Yao,J.,Liu,R.,Zhao,Y.,Chen,X.,YangY.Asingle-componentlightsensorsystemallowshighlytunableanddirectactivationofgeneexpressioninbacterialcells.NucleicAcidsResearch,2020,48(6),e33.

17.Chen,X.,Zhang,D.,Su,N.,Bao,B.,Xie,X.,Zuo,F.,Yang,L.,Wang,H.,Jiang,L.,Lin,Q.,Fang,M.,Li,N.,Hua,X.,Chen,Z.,Bao,C.,Xu,J.,Du,W.,Zhang,L.,Zhao,Y.,Zhu,L.,Loscalzo,J.,Yang,Y.VisualizingRNAdynamicsinlivecellswithbrightandstablefluorescentRNAs.NatureBiotechnology,2019,37(11),1287-1293.

18.Hao,X.,Gu,H.,Chen,C.,Huang,D.,Zhao,Y.,Xie,L.,Zou,Y.,Shu,H.,Zhang,Y.,He,X.,Lai,X.,Zhang,X.,Zhou,B.,Zhang,C.,Chen,G.,Yu,Z.,Yang,Y.,Zheng,J.Metabolicimagingrevealsauniquepreferenceofsymmetriccelldivisionandhomingofleukemia-Initiatingcellsinanendostealniche.CellMetabolism,2019,29(4),950-965.

19.Cheng,F.,Lu,W.,Liu,C.,Fang,J.,Hou,Y.,Handy,D.,Wang,R.,Zhao,Y.,Yang,Y.,Huang,J.,Hill,D.,Vidal,M.,Eng,C.,Loscalzo,J.Agenome-widepositioningsystemsnetworkalgorithmforinsilicodrugrepurposing.NatureCommunications,2019,10,3476.

20.Zhu,X.,Shen,W.,Yao,K.,Wang,H.,LiuB.,Li,T.,Song,L.,Diao,D.,Mao,G.,Huang,P.,Li,C.,Zhang,H.,Zou,Y.,Qiu,Y.,Zhao,Y.,Wang,W.,Yang,Y.,Hu,Z.,Auwerx,J.,Loscalzo,J.,Zhou,Y.,Ju,Z.Fine-tuningofPGC1αexpressionregulatescardiacfunctionandlongevity.CirculationResearch,2019,125(7),707-719.

21.Liu,X.,Zhang,F.,Zhang,Y.,Li,X.,Chen,C.,Zhou,M.,Yu.Z.,Liu,Y.,Zhao,Y.,Hao,X.,Tang,Y.,Zhu,L.,Liu,L.,Xie,L.,Gu,H.,Shao,H.,Xia,F.,Yin,C.,Tao,M.,Xie,J.,Zhang,C.,Yang,Y.,Sun,H.,Chen,G.,Zheng,J.PPM1KregulateshematopoiesisandleukemogenesisthroughCDC20-mediatedubiquitinationofMEIS1andp21.CellReports,2018,23,1461-1475.

22.Chen,X.,Tian,M.,Sun,R.,Zhang,M.,Zhou,L.,Jin,L.,Chen,L.,Zhou,W.,Duan,K.,Chen,Y.,Gao,C.,Cheng,Z.,Wang,F.,Zhang,J.,Sun,Y.,Yu,H.,Zhao,Y.,Yang,Y.,Liu,W.,Shi,Y.,Xiong,Y.,Guan,K.,andYe,D.SIRT5inhibitsperoxisomalACOX1topreventoxidativedamageandisdownregulatedinlivercancer.EMBOReports,2018,e45124.

23.Fang,Y.,Liu,Z.,Chen,Z.,Xu,X.,Xiao,M.,Yu,Y.,Zhang,Y.,Zhang,X.,Du,Y.,Jiang,C.,Zhao,Y.,Wang,Y.,Fan,B.,Terheyden-Keighley,D.,Liu,Y.,Shi,L.,Hui,Y.,Zhang,X.,Zhang,B.,Feng,H.,Ma,L.,Zhang,Q.,Jin,G.,Yang,Y.,Xiang,B.,Liu,L.,Zhang,X.Smad5actsasanintracellularpHmessengerandmaintainsbioenergetichomoeostasis.CellResearch,2017,27,1083-1099.

24.Yang,K.,Wang,M.,Zhao,Y.,Sun,X.,Yang,Y.,Li,X.,Zhou,A.,Chu,H.,Zhou,H.,Xu,J.,Wu,M.,Yang,J.,andYi,J.Aredoxmechanismunderlyingnucleolarstresssensingbynucleophosmin.NatureCommunications,2016,7,13599.

25.Yang,H.,Zhou,L.,Shi,Q.,Zhao,Y.,Lin,H.,Zhang,M.,Zhao,S.,Yang,Y.,Ling,Z.,Guan,K.,Xiong,Y.,andYe,D.SIRT3-dependentGOT2acetylationstatusaffectsthemalate-aspartateNADHshuttleactivityandpancreatictumorgrowth.EMBOJournal,2015,34,1110-1125.

26.Wang,Y.,Zhou,L.,Zhao,Y.,Wang,S.,Chen,L.,Liu,L.,Ling,Z.,Hu,F.,Sun,Y.,Zhang,J.,Yang,C.,Yang,Y.,Xiong,Y.,Guan,K.,andYe,D.RegulationofG6PDacetylationbySIRT2andKAT9modulatesNADPHhomeostasisandcellsurvivalduringoxidativestress.EMBOJournal,2014,33,1304–1320.

THE END
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9.三氧的神奇作用三氧治疗的广泛应用,让大家不禁心生好奇,三氧为什么能使用于这么多种疾病?这首先要从免疫三氧疗法的五大医用功能说起。 图片发自简书App 一、抗炎抗感染的功能 二、氧化胆固醇的功能 美国《FreeRadicalBiology&Medicine》杂志曾发表论文,报告了对22名心梗患者经进行免疫三氧治疗后的结果: https://www.jianshu.com/p/f6c17aeaf4f3
10.花生四烯酸价格品牌:Free Radical Biology and Medicine. 2020. 花生四烯酸靶向检测-小鼠细胞-协助研究铁死亡在帕金森病症中的作用机制【客户文献】 风险提示:丁香通仅作为第三方平台,为商家信息发布提供平台空间。用户咨询产品时请注意保护个人信息及财产安全,合理判断,谨慎选购商品,商家和用户对交易行为负责。对于医疗器械类产品,请先查证https://www.biomart.cn/infosupply/105547328.htm
11.科学网—活性氧种类和选择性抗氧化5.44.Davies MJ, Fu S, Dean RT. Protein hydroperoxides can giverise to reactive free radicals. The Biochemical journal. 1995;305 ( Pt 2):643-649 5.Rahmanto AS, Morgan PE, Hawkins CL, Davies MJ. Cellulareffects of peptide and protein hydroperoxides. Free radical biology &medicine. 2010;48:https://blog.sciencenet.cn/blog-41174-778145.html
12.FreeRadicalBiologyandMedicine投稿经验分享《 Free Radical Biology and Medicine》近些年的发文量整体呈波浪浮动,2022-2023年度发文量为372篇。预计未来年发文量会有一定的提升。 4、国人发文情况 《 Free Radical Biology and Medicine》近三年国人发文量为514,排名第二。 其它 1、审稿速度 根据网友经验,平均审核时间为3个月。根据官网数据,所有稿件提交至https://m.peipusci.com/news/7491.html