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微生物营养物质代谢与微生物-肠-脑轴互作研究进展 被引量:2
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作者 王后福 李鹏飞 +1 位作者 矣国 冷静 《动物营养学报》 CAS CSCD 北大核心 2020年第1期28-35,共8页
微生物在人和动物胃肠道内含量极为丰富,其在肠道与脑之间的交流通信过程中发挥着重要影响。微生物、肠道和脑之间存在神经、体液和免疫途径双向通信的系统,即微生物-肠-脑轴,其参与调控胃肠道微生物稳态和大脑功能及机体行为。本文通... 微生物在人和动物胃肠道内含量极为丰富,其在肠道与脑之间的交流通信过程中发挥着重要影响。微生物、肠道和脑之间存在神经、体液和免疫途径双向通信的系统,即微生物-肠-脑轴,其参与调控胃肠道微生物稳态和大脑功能及机体行为。本文通过总结与微生物-肠-脑轴相关的微生物营养物质代谢、能量稳态、作用途径和宿主健康的研究成果,旨在为动物营养物质代谢调控提供一定的参考。 展开更多
关键词 微生物-肠-脑轴 微生物代谢 互作途径 能量代谢 健康
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Biosynthetic approach to modeling and understanding metalloproteins using unnatural amino acids 被引量:1
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作者 Yang Yu Chang Cui +1 位作者 Jiangyun Wang Yi Lu 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第2期188-200,共13页
Metalloproteins have inspired chemists for many years to synthesize artificial catalysts that mimic native enzymes.As a complementary approach to studying native enzymes or making synthetic models,biosynthetic approac... Metalloproteins have inspired chemists for many years to synthesize artificial catalysts that mimic native enzymes.As a complementary approach to studying native enzymes or making synthetic models,biosynthetic approach using small and stable proteins to model native enzymes has offered advantages of incorporating non-covalent secondary sphere interactions under physiological conditions.However,most biosynthetic models are restricted to natural amino acids.To overcome this limitation,incorporating unnatural amino acids into the biosynthetic models has shown promises.In this review,we summarize first synthetic,semisynthetic and biological methods of incorporates unnatural amino acids(UAAs)into proteins,followed by progress made in incorporating UAAs into both native metalloproteins and their biosynthetic models to fine-tune functional properties beyond native enzymes or their variants containing natural amino acids,such as reduction potentials of azurin,O_2 reduction rates and percentages of product formation of HCO models in Mb,the rate of radical transport in ribonucleotide reductase(RNR)and the proton and electron transfer pathways in photosystemⅡ(PSⅡ).We also discuss how this endeavour has allowed systematic investigations of precise roles of conserved residues in metalloproteins,such as Metl21 in azurin,Tyr244 that is cross-linked to one of the three His ligands to CuB in HCO,Tyr122,356,730 and 731 in RNR and TyrZ in PSⅡ.These examples have demonstrated that incorporating UAAs has provided a new dimension in our efforts to mimic native enzymes and in providing deeper insights into structural features responsible high enzymatic activity and reaction mechanisms,making it possible to design highly efficient artificial catalysts with similar or even higher activity than native enzymes. 展开更多
关键词 metalloenzymes heme proteins copper proteins ribonucleotide reductase protein design
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