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数字经济中的算法均衡挑战 被引量:1
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作者 程郁琨 邓小铁 +2 位作者 段志建 肖涛 张梦倩 《中国科学基金》 CSSCI CSCD 北大核心 2023年第6期891-904,共14页
在当今蓬勃发展的数字经济背景下,人类认知所带来的挑战正在重新定义经济学、运筹管理以及计算理论的新发展方向,呈现出引人注目的全新研究内容。与此同时,算法博弈论的迅猛发展,将计算因素与人的有限理性巧妙结合起来,为研究数字经济... 在当今蓬勃发展的数字经济背景下,人类认知所带来的挑战正在重新定义经济学、运筹管理以及计算理论的新发展方向,呈现出引人注目的全新研究内容。与此同时,算法博弈论的迅猛发展,将计算因素与人的有限理性巧妙结合起来,为研究数字经济环境下的各类博弈场景提供了一个统一而简洁的方法框架,为经济学和博弈论带来了新的研究视角。本文回顾了数字经济不同情境下涌现出的各类经济均衡解的新概念,聚焦于参与者的策略行为对均衡结果的挑战与影响,运用算法博弈论对参与者策略行为进行激励分析,刻画博弈过程中参与者之间的竞争与合作关系,并评估不同策略行为对系统均衡的影响。 展开更多
关键词 数字经济 拍卖 市场均衡 区块链 激励分析 算法均衡
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Nuclear TIGAR mediates an epigenetic and metabolic autoregulatory loop via NRF2 in cancer therapeutic resistance 被引量:3
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作者 Hong Wang Qianqian Wang +11 位作者 Guodi Cai zhijian duan Zoann Nugent Jie Huang Jianwei Zheng Alexander D.Borowsky Jian Jian Li Peiqing Liu Hsing-Jien Kung Leigh Murphy Hong-Wu Chen Junjian Wang 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2022年第4期1871-1884,共14页
Metabolic and epigenetic reprogramming play important roles in cancer therapeutic resistance.However,their interplays are poorly understood.We report here that elevated TIGAR(TP53-induced glycolysis and apoptosis regu... Metabolic and epigenetic reprogramming play important roles in cancer therapeutic resistance.However,their interplays are poorly understood.We report here that elevated TIGAR(TP53-induced glycolysis and apoptosis regulator),an antioxidant and glucose metabolic regulator and a target of oncogenic histone methyltransferase NSD2(nuclear receptor binding SET domain protein 2),is mainly localized in the nucleus of therapeutic resistant tumor cells where it stimulates NSD2 expression and elevates global H3K36me2 mark.Mechanistically,TIGAR directly interacts with the antioxidant master regulator NRF2 and facilitates chromatin recruitment of NRF2,H3K4me3 methylase MLL1 and elongating Pol-II to stimulate the expression of both new(NSD2)and established(NQO1/2,PRDX1 and GSTM4)targets of NRF2,independent of its enzymatic activity.Nuclear TIGAR confers cancer cell resistance to chemotherapy and hormonal therapy in vitro and in tumors through effective maintenance of redox homeostasis.In addition,nuclear accumulation of TIGAR is positively associated with NSD2 expression in clinical tumors and strongly correlated with poor survival.These findings define a nuclear TIGAR-mediated epigenetic autoregulatory loop in redox rebalance for tumor therapeutic resistance. 展开更多
关键词 TIGAR NSD2 NRF2 METABOLISM Oxidative stress Epigenetic reprogramming Therapeutic resistance Redox homeostasis
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