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The evaluation of calculated protein structures is an importantstep in the protein design cycle. Known criteria for this assessmentof proteins are the polar and apolar, accessible and buriedsurface area, electrostatic interactions and other interactionsbetween the protein atoms (e.g. HO, S-S),atomic packing, analysisof amino acid environment and surface charge distribution. Weshow that a powerful test of accuracy of protein structure canbe derived by analysing the water contact of atoms and additionallytaking into account their polarity. On the basis of estimatedreference values of the polar fraction of typical globular proteinswith known structure (mean, SD and distribution), the evaluationof misfolded structures can be improved significantly. The referencevalues are derived by moving windows of different length (3–99amino acid residues) over the amino acid sequence. Model proteins,which are included in the Brookhaven protein structure databank,deliberately misfolded proteins, hypothetical proteins and predictedprotein structures are diagnosed as at least partially incorrectlyfolded. The local fault, mostly observed, is that polar groupsare buried too frequently in the interior of the protein. Thedatabase-derived quantities are useful in screening the designedproteins prior to experimentation and may also be useful inthe assessment of errors in the experimentally determined proteinstructures.  相似文献   
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KODABA - An information system for corrosion data Corrosion and damage resulting from corrosion cause considerable safety risks and high costs. In order to avoid or limit these consequences the design engineer and the plant operator require information on when and how corrosion effects can occur. Access to such information should be simple and fast. This is provided by the corrosion data information system KODABA, a system designed for collecting, compiling and archiving of corrosion data from various fields. KODABA consists of a user–friendly program shell which is easily adaptable to the specific needs of a client. It enables an easy and fast access to the archived data and offers comfortable query options and a user surface in English, French or German. In addition, a number of options are available for the management, interpretation and documentation of the results of a query. KODABA is written in FORTRAN, CLIPPER and C programming languages and designed for use on an IBM compatible personal computer running under the MS-DOS operating system. It has proven to be a helpful tool for anyone who has to deal with corrosion problems.  相似文献   
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