Serveur d'exploration MERS - Checkpoint (PubMed)

Index « Mesh.i » - entrée « Hydrophobic and Hydrophilic Interactions »
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List of bibliographic references

Number of relevant bibliographic references: 12.
Ident.Authors (with country if any)Title
000372 (2019) Hannah R. Doss [États-Unis] ; Mathura Raman [États-Unis] ; Ryan Knihtila [États-Unis] ; Naresh Chennamsetty [États-Unis] ; David Wang [États-Unis] ; Alan Shupe [États-Unis] ; Nesredin Mussa [États-Unis]Streamlining the polishing step development process via physicochemical characterization of monoclonal antibody aggregates.
000826 (2018) Mukesh Mahajan [Singapour] ; Deepak Chatterjee [Singapour] ; Kannaian Bhuvaneswari [Singapour] ; Shubhadra Pillay [Singapour] ; Surajit Bhattacharjya [Singapour]NMR structure and localization of a large fragment of the SARS-CoV fusion protein: Implications in viral cell fusion.
000A17 (2018) Alejandro Sanz-Bravo [Espagne] ; Adrian Martín-Esteban [Espagne] ; Jonas J W. Kuiper [Pays-Bas] ; Marina García-Peydr [Espagne] ; Eilon Barnea [Israël] ; Arie Admon [Israël] ; José A. L Pez De Castro [Espagne]Allele-specific Alterations in the Peptidome Underlie the Joint Association of HLA-A*29:02 and Endoplasmic Reticulum Aminopeptidase 2 (ERAP2) with Birdshot Chorioretinopathy.
000D54 (2017) Shan Su [République populaire de Chine] ; Yun Zhu [République populaire de Chine] ; Sheng Ye [République populaire de Chine] ; Qianqian Qi [République populaire de Chine] ; Shuai Xia [République populaire de Chine] ; Zhenxuan Ma [République populaire de Chine] ; Fei Yu [République populaire de Chine] ; Qian Wang [République populaire de Chine] ; Rongguang Zhang [République populaire de Chine] ; Shibo Jiang [République populaire de Chine] ; Lu Lu [République populaire de Chine]Creating an Artificial Tail Anchor as a Novel Strategy To Enhance the Potency of Peptide-Based HIV Fusion Inhibitors.
001347 (2015) T. Hidaka [Japon] ; A. Shimada [Japon] ; Y. Nakata [Japon] ; H. Kodama [Japon] ; H. Kurihara [Japon] ; T. Tokihiro [Japon] ; S. Ihara [Japon]Simple model of pH-induced protein denaturation.
001485 (2015) Sakshi Tomar ; Melanie L. Johnston [États-Unis] ; Sarah E. St John ; Heather L. Osswald [États-Unis] ; Prasanth R. Nyalapatla [États-Unis] ; Lake N. Paul ; Arun K. Ghosh [États-Unis] ; Mark R. Denison [États-Unis] ; Andrew D. Mesecar [États-Unis]Ligand-induced Dimerization of Middle East Respiratory Syndrome (MERS) Coronavirus nsp5 Protease (3CLpro): IMPLICATIONS FOR nsp5 REGULATION AND THE DEVELOPMENT OF ANTIVIRALS.
001874 (2014) Halil Aydin [Canada] ; Dina Al-Khooly ; Jeffrey E. LeeInfluence of hydrophobic and electrostatic residues on SARS-coronavirus S2 protein stability: insights into mechanisms of general viral fusion and inhibitor design.
001C77 (2012) Chris D. Willis [États-Unis] ; Taiji Oashi ; Ben Busby ; Alexander D. Mackerell ; Robert J. BlochHydrophobic residues in small ankyrin 1 participate in binding to obscurin.
001F17 (2009) Masoud Jelokhani-Niaraki [Canada] ; Leslie H. Kondejewski ; Laura C. Wheaton ; Robert S. HodgesEffect of ring size on conformation and biological activity of cyclic cationic antimicrobial peptides.
001F47 (2008) Mabel A. Cejas [États-Unis] ; William A. Kinney ; Cailin Chen ; Jeremy G. Vinter ; Harold R. Almond ; Karin M. Balss ; Cynthia A. Maryanoff ; Ute Schmidt ; Michael Breslav ; Andrew Mahan ; Eilyn Lacy ; Bruce E. MaryanoffThrombogenic collagen-mimetic peptides: Self-assembly of triple helix-based fibrils driven by hydrophobic interactions.
002014 (2008) Takeshi Bamba [Japon]Application of supercritical fluid chromatography to the analysis of hydrophobic metabolites.
002036 (2007) Martha Knight [États-Unis]Separations of hydrophobic synthetic peptides in counter-current chromatography.

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