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京津冀一体化中智慧城市发展水平实证分析 被引量:1
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作者 高娃 juefei zhou 《智能城市》 2020年第13期1-3,共3页
为实证分析京津冀一体化中智慧城市发展水平,构建了包括经济水平、环境治理、基础设施、科技创新和信息产业等5个一级指标和16个二级指标的评价指标体系,应用主成分法对北京、天津及河北的石家庄、张家口、秦皇岛和沧州6个城市的2018年... 为实证分析京津冀一体化中智慧城市发展水平,构建了包括经济水平、环境治理、基础设施、科技创新和信息产业等5个一级指标和16个二级指标的评价指标体系,应用主成分法对北京、天津及河北的石家庄、张家口、秦皇岛和沧州6个城市的2018年统计年鉴中的相关数据进行实证分析,得出智慧城市发展水平的综合性因子、经济因子和居民生活质量因子共3个主成分因子及综合评价模型。根据各城市综合评价得分及排名来评价各城市智慧发展水平,据此提出促进京津冀一体化中智慧城市发展的政策建议。 展开更多
关键词 智慧城市 京津冀一体化 主成分分析
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Plasma membrane calcium ATPase 4b inhibits nitric oxide generation through calcium-induced dynamic interaction with neuronal nitric oxide synthase 被引量:1
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作者 Wenjuan Duan juefei zhou +4 位作者 Wei Li Teng zhou Qianqian Chen Fuyu Yang Taotao Wei 《Protein & Cell》 SCIE CSCD 2013年第4期286-298,共13页
The activation and deactivation of Ca^(2+)- and calmodulindependent neuronal nitric oxide synthase (nNOS) in the central nervous system must be tightly controlled to prevent excessive nitric oxide (NO) generation. Con... The activation and deactivation of Ca^(2+)- and calmodulindependent neuronal nitric oxide synthase (nNOS) in the central nervous system must be tightly controlled to prevent excessive nitric oxide (NO) generation. Considering plasma membrane calcium ATPase (PMCA) is a key deactivator of nNOS, the present investigation aims to determine the key events involved in nNOS deactivation of by PMCA in living cells to maintain its cellular context. Using time-resolved Förster resonance energy transfer (FRET), we determined the occurrence of Ca^(2+)-induced protein-protein interactions between plasma membrane calcium ATPase 4b (PMCA4b) and nNOS in living cells. PMCA activation significantly decreased the intracellular Ca 2+ concentrations ([Ca^(2+)]_(i)), which deactivates nNOS and slowdowns NO synthesis. Under the basal [Ca^(2+)]_(i) caused by PMCA activation, no protein-protein interactions were observed between PMCA4b and nNOS. Furthermore, both the PDZ domain of nNOS and the PDZ-binding motif of PMCA4b were essential for the protein-protein interaction. The involvement of lipid raft microdomains on the activity of PMCA4b and nNOS was also investigated. Unlike other PMCA isoforms, PMCA4 was relatively more concentrated in the raft fractions. Disruption of lipid rafts altered the intracellular localization of PMCA4b and affected the interaction between PMCA4b and nNOS, which suggest that the unique lipid raft distribution of PMCA4 may be responsible for its regulation of nNOS activity. In summary, lipid rafts may act as platforms for the PMCA4b regulation of nNOS activity and the transient tethering of nNOS to PMCA4b is responsible for rapid nNOS deactivation. 展开更多
关键词 plasma membrane calcium ATPase neu-ronal nitric oxide synthase CALCIUM nitric oxide lipid raft Förster resonance energy transfer
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