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7篇 您的检索式:作者名="Yushan Lin"
    题名 作者 年代 出处 被引量
1The positive effects of relationship learning and absorptive capacity on innovation performance and competi- tive advantage in industrial markets显示文摘YUSHAN CHEN MINGJI JAMES LIN CHINGHSUN CHANG 2009Industrial Market- ing Management2009,,38:1
2Liquid chromatographic de- termination of cephalexin preparations: interlaboratory validation显示文摘HSU M C CHUNG H C LIN Yushan 1996Journal of Chromatography A1996,727,2:1
3Sharing and hiding se-cret images with size constraint 显示文摘Yushan Wu Chihching Thien J C JaChen Lin 2004Pattern Recognition2004,37,7:1
4A metabolome atlas of mouse brain on the global metabolic signature dynamics following short-term fasting显示文摘Calorie restriction(CR)or a fasting regimen is considered one of the most potent non-pharmacological interventions to prevent chronic metabolic disorders,ameliorate autoimmune diseases,and attenuate aging.Despite efforts,the mechanisms by which CR improves health,particularly brain health,are still not fully understood.Metabolic homeostasis is vital for brain function,and a detailed metabolome atlas of the brain is essential for understanding the networks connecting different brain regions.Yaping Shao Zhenfa Fu Yanfeng Wang Zhaofei Yang Yushan Lin Song Li Cheng Cheng Min Wei Zheyi Liu Guowang Xu Weidong Le 2023Signal Transduction and Targeted Therapy2023,8,10:0
5S19W,T27W,and N33OY mutations in ACE2 enhance SARS-CoV-2 S-RBD binding toward both wild-type and antibody-resistant viruses and its molecular basis显示文摘SARS-CoV-2 recognizes,via its spike receptor-binding domain(S-RBD),human angiotensin-converting enzyme 2(ACE2)to initiate infection.Ecto-domain protein of ACE2 can therefore function as a decoy.Here we show that mutations of S19W,T27W,and N330Y in ACE2 could individually enhance SARS-CoV-2 S-RBD binding.Y330 could be synergistically combined with either W19 or W27,whereas W19 and W27 are mutually unbeneficial.The structures of SARS-CoV-2S-RBD bound to the ACE2 mutants reveal that the enhan ced binding is mainly con tributed by the van der Waals interactio ns mediated by the aromatic side-chai ns from W19,W27,and Y330.While Y330 and W19/W27 are distantly located and devoid of any steric interference,W19 and W27 are shown to orient their side-chains toward each other and to cause steric conflicts,explai ning their in compatibility.Finally,using pseudotyped SARS-CoV-2 viruses,we dem on strate that these residue substitutions are associated with dramatically improved entry-inhibition efficacy toward both wild-type and antibody-resistant viruses.Taken together,our biochemical and structural data have delineated the basis for the elevated S-RBD binding associated with S19W,T27W,and N330Y mutations in ACE2,paving the way for potential application of these mutants in dinical treatment of COVID-19.Fei Ye Xi Lin Zimin Che Fanli Yang Sheng Lin Jing Yang Hua Chen Honglu Sun Lingling Wang Ao Wen Xindan Zhang Yushan Dai Yu Cao Jingyun Yang Guobo Shen Li Yang Jiong Li Zhenling Wang Wei Wang Xiawei Wei Guangwen Lu 2021Signal Transduction and Targeted Therapy2021,6,10:0
6Sperm cryopreservation in the human sperm bank:11-year results of the Chinese mainland sperm banking network显示文摘To the Editor:Montegazza in 1866 was the first to suggest banks for frozen human semen.[1]In 1981,China's first human sperm bank was successfully established at the CITIC Xiangya Hospital.During the previous four decades,from 1981 to 2020,there were 27 human sperm banks in Chinese mainland.Human sperm banks provide cryopreservation of spermatozoa services for males needing to preserve fertility for an extended period in the Chinese mainland.Xiao Liu Qiling Wang Wenbing Zhu Zhou Zhang Wenhao Tang Huiqiang Sheng Jigao Yang Yushan Li Xiaowei Liang Tianqing Meng Zhiqiang Wang Faxi Lin Hao Dong Xiaojin He Xianglong Jiang Shanjun Dai Aiping Zhang Chunying Song Zuowen Liang Feng Zhang Xiaojun Wang Peiyu Liang Guihua Gong Xiaohong Huai Fuping Xinzong Zhang 2022Chinese Medical Journal2022,135,22:0
7Transcriptome-wide analysis of mRNA N^(6)-methyladenosine modification in the embryonic development of Spodoptera frugiperda显示文摘N^(6)-methyladenosine(m^(6)A)RNA is the most abundant modification of mRNA,and has been demonstrated in regulating various post-transcriptional processes.Many studies have shown that m^(6)A methylation plays key roles in sex determination,neuronal functions,and embryonic development in Drosophila and mammals.Here,we analyzed transcriptome-wide profile of m^(6)A modification in the embryonic development of the destructive agricultural pest Spodoptera frugiperda.We found that the 2 key mRNA m^(6)A methyltransferases SfrMETTL3 and SfrMETTL14 have high homologies with other insects and mammals,suggesting that SfrMETTL3 and SfrMETTL14 may have conserved function among different species.From methylated RNA immunoprecipitation sequencing analysis,we obtained 46869 m^(6)A peaks representing 8587 transcripts in the 2-h embryos after oviposition,and 41389 m^(6)A peaks representing 9230 transcripts in the 24-h embryos.In addition,5995 m^(6)A peaks were differentially expressed including 3752 upregulated and 2243 downregulated peaks.Functional analysis with Gene Ontology and Kyoto Encyclopedia of Genes and Genomes suggested that differentially expressed m^(6)A peak-modified genes were enriched in cell and organ development between the 2-and 24-h embryos.By conjoint analysis of methylated RNA immunoprecipitation-seq and RNA-seq data,we found that RNA m^(6)A methylation may regulate the transcriptional levels of genes related to tissue and organ development from 2-to 24-h embryos.Our study reveals the role of RNA m^(6)A epigenetic regulation in the embryonic development of S.frugiperda,and provides new insights for the embryonic development of insects.Yaqing Chen Yushan Lai Runzhou Liu Lin Yao Xiao-Qiang Yu Xiaoyun Wang 2023Insect Science2023,30,5:0
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