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Automating tasks in protein structure determination with the clipper python module.


ABSTRACT: Scripting programming languages provide the fastest means of prototyping complex functionality. Those with a syntax and grammar resembling human language also greatly enhance the maintainability of the produced source code. Furthermore, the combination of a powerful, machine-independent scripting language with binary libraries tailored for each computer architecture allows programs to break free from the tight boundaries of efficiency traditionally associated with scripts. In the present work, we describe how an efficient C++ crystallographic library such as Clipper can be wrapped, adapted and generalized for use in both crystallographic and electron cryo-microscopy applications, scripted with the Python language. We shall also place an emphasis on best practices in automation, illustrating how this can be achieved with this new Python module.

SUBMITTER: McNicholas S 

PROVIDER: S-EPMC5734304 | biostudies-literature | 2018 Jan

REPOSITORIES: biostudies-literature

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Automating tasks in protein structure determination with the clipper python module.

McNicholas Stuart S   Croll Tristan T   Burnley Tom T   Palmer Colin M CM   Hoh Soon Wen SW   Jenkins Huw T HT   Dodson Eleanor E   Cowtan Kevin K   Agirre Jon J  

Protein science : a publication of the Protein Society 20171106 1


Scripting programming languages provide the fastest means of prototyping complex functionality. Those with a syntax and grammar resembling human language also greatly enhance the maintainability of the produced source code. Furthermore, the combination of a powerful, machine-independent scripting language with binary libraries tailored for each computer architecture allows programs to break free from the tight boundaries of efficiency traditionally associated with scripts. In the present work, w  ...[more]

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