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      Unique motif shared by HLA‐B*59:01 and HLA‐B*55:02 is associated with methazolamide‐induced Stevens–Johnson syndrome and toxic epidermal necrolysis in Han Chinese

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          Most cited references38

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          PLINK: a tool set for whole-genome association and population-based linkage analyses.

          Whole-genome association studies (WGAS) bring new computational, as well as analytic, challenges to researchers. Many existing genetic-analysis tools are not designed to handle such large data sets in a convenient manner and do not necessarily exploit the new opportunities that whole-genome data bring. To address these issues, we developed PLINK, an open-source C/C++ WGAS tool set. With PLINK, large data sets comprising hundreds of thousands of markers genotyped for thousands of individuals can be rapidly manipulated and analyzed in their entirety. As well as providing tools to make the basic analytic steps computationally efficient, PLINK also supports some novel approaches to whole-genome data that take advantage of whole-genome coverage. We introduce PLINK and describe the five main domains of function: data management, summary statistics, population stratification, association analysis, and identity-by-descent estimation. In particular, we focus on the estimation and use of identity-by-state and identity-by-descent information in the context of population-based whole-genome studies. This information can be used to detect and correct for population stratification and to identify extended chromosomal segments that are shared identical by descent between very distantly related individuals. Analysis of the patterns of segmental sharing has the potential to map disease loci that contain multiple rare variants in a population-based linkage analysis.
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            AutoDock4 and AutoDockTools4: Automated docking with selective receptor flexibility.

            We describe the testing and release of AutoDock4 and the accompanying graphical user interface AutoDockTools. AutoDock4 incorporates limited flexibility in the receptor. Several tests are reported here, including a redocking experiment with 188 diverse ligand-protein complexes and a cross-docking experiment using flexible sidechains in 87 HIV protease complexes. We also report its utility in analysis of covalently bound ligands, using both a grid-based docking method and a modification of the flexible sidechain technique. (c) 2009 Wiley Periodicals, Inc.
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              SWISS-MODEL: homology modelling of protein structures and complexes

              Abstract Homology modelling has matured into an important technique in structural biology, significantly contributing to narrowing the gap between known protein sequences and experimentally determined structures. Fully automated workflows and servers simplify and streamline the homology modelling process, also allowing users without a specific computational expertise to generate reliable protein models and have easy access to modelling results, their visualization and interpretation. Here, we present an update to the SWISS-MODEL server, which pioneered the field of automated modelling 25 years ago and been continuously further developed. Recently, its functionality has been extended to the modelling of homo- and heteromeric complexes. Starting from the amino acid sequences of the interacting proteins, both the stoichiometry and the overall structure of the complex are inferred by homology modelling. Other major improvements include the implementation of a new modelling engine, ProMod3 and the introduction a new local model quality estimation method, QMEANDisCo. SWISS-MODEL is freely available at https://swissmodel.expasy.org.
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                Author and article information

                Contributors
                Journal
                Journal of the European Academy of Dermatology and Venereology
                Acad Dermatol Venereol
                Wiley
                0926-9959
                1468-3083
                June 2022
                March 08 2022
                June 2022
                : 36
                : 6
                : 873-880
                Affiliations
                [1 ]Children’s Hospital & Institutes of Biomedical Sciences Fudan University Shanghai China
                [2 ]Department of Dermatology Huashan Hospital Fudan University Shanghai China
                [3 ]<idGroup xmlns="http://www.wiley.com/namespaces/wiley"> <id type="ringgold" value="12636"></id> </idGroup> Department of Pharmacology School of Basic Medical Sciences Zhengzhou University Zhengzhou China
                [4 ]<idGroup xmlns="http://www.wiley.com/namespaces/wiley"> <id type="ringgold" value="12636"></id> </idGroup> School of Pharmaceutical Sciences Zhengzhou University Zhengzhou China
                Article
                10.1111/jdv.17980
                35122707
                891e0401-5b47-4d33-8cfd-d5acd4dd660d
                © 2022

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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