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    题名 作者 年代 出处 被引量
1Soliton-likesolutions for the modified variable-coefficient Ginzburg-Landau equation 显示文摘Jian GL Ye ZLi Bo T 2009 2009Communications in Nonlinear Science and Numerical Simulation2009,14,4:1
2IncreasedexpressionofS100A6pro-motescellproliferationandmigrationinhumanhepatocellularcar-cinoma显示文摘ZLi M Tang BLing etal 2014JMolecularMed2014,92,3:1
3PI3K/Akt mediates expression of TNF‐α mRNA and activation of NF‐κB in calyculin A‐treated primary osteoblasts显示文摘LQiu LZhang LZhu DYang ZLi KQin XMi 2008Oral Diseases2008,,8:1
4Maxillofacial cone beam computed tomography: essence, elements and steps to interpretation显示文摘WCScarfe ZLi WAboelmaaty SAScott AGFarman 2012Australian Dental Journal2012,,:1
5The al,3-galactosyltransferase knockout mouse--implication for xenotransplantation显示文摘Tearle ERG Tange MJ Zannettino ZLI 1996Transplantation1996,61,1:1
6In-situCompositeBasedonPoly(ethyleneterephthalate) PolyamideandPolyethylenewithMicrofibl-sFormedthroughExtrusionandHotStretching显示文摘ZLI MYANG RHUANG etal 2002Journal of Materials Science & Technology(材料科学技术学报:英文版)2002,18,:1
7New hyperbranched polyether containing cyclic carbonate groups as a toughening agent for epoxy resin显示文摘PARZUCHOWSKI P G KI ZLI NSKA M ROKICKI G 2007Polymer2007,48,7:1
8Laparoscopic herniorrhaphy: review of complications and recurrence显示文摘Sayad P Hallak A Fer'zli G 1998J Lapareendosc Adv Surg Tech A1998,8,1:1
9Immunohistochemical study of functional proteins in living mouse organs by “In Vivo Cryotechnique”显示文摘SOhno NTerada NOhno ZLi YFujii TBaba 2004中国组织化学与细胞化学杂志2004,13,3:0
10Diversified Application of Barcoded PLATO(PLATO-BC) Platform for Identification of Protein Interactions显示文摘Proteins usually associate with other molecules physically to execute their functions.Identifying these interactions is important for the functional analysis of proteins.Previously,we reported the parallel analysis of translated ORFs(PLATO)to couple ribosome display of full-length ORFs with affinity enrichment of mRNA/protein/ribosome complexes for the “bait”molecules,followed by the deep sequencing analysis of mRNA.However,the sample processing,from extraction of precipitated mRNA to generation of DNA libraries,includes numerous steps,which is tedious and may cause the loss of materials.Barcoded PLATO(PLATO-BC),an improved platform was further developed to test its application for protein interaction discovery.In this report,we tested the antisera-antigen interaction using serum samples from patients with inclusion body myositis(IBM).Tripartite motif containing 21(TRIM21)was identified as a potentially new IBM autoantigen.We also expanded the application of PLATO-BC to identify protein interactions for JQ1,single ubiquitin peptide,and NS5 protein of Zika virus.From PLATO-BC analyses,we identified new protein interactions for these “bait”molecules.We demonstrate that Ewing sarcoma breakpoint region 1(EWSR1)binds to JQ1 and their interactions may interrupt the EWSR1 association with acetylated histone H4.RIO kinase 3(RIOK3),a newly identified ubiquitin-binding protein,is preferentially associated with K63-ubiquitin chain.We also find that Zika NS5 protein interacts with two previously unreported host proteins,par-3 family cell polarity regulator(PARD3)and chromosome 19 open reading frame 53(C19orf53),whose attenuated expression benefits the replication of Zika virus.These results further demonstrate that PLATO-BC is capable of identifying novel protein interactions for various types of “bait”molecules.Weili Kong Tsuyoshi Hayashi Guillaume Fiches Qikai Xu Mamie ZLi Jianwen Que Shuai Liu Wei Zhang Jun Qi Netty Santoso Stephen JElledge Jian Zhu 2019Genomics, Proteomics & Bioinformatics2019,17,3:0
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