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Innovation by homologous recombination

期刊

CURRENT OPINION IN CHEMICAL BIOLOGY
卷 17, 期 6, 页码 902-909

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ELSEVIER SCI LTD
DOI: 10.1016/j.cbpa.2013.10.007

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资金

  1. Institute for Collaborative Biotechnologies from the U.S. Army Research [W911NF-09-D-0001]
  2. National Science Council of Taiwan, R.O.C. [NSC 102-3113-P-008-001]
  3. Canadian National Science and Engineering Research Council post-graduate fellowship
  4. Resnick Sustainability Institute fellowship

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Swapping fragments among protein homologs can produce chimeric proteins with a wide range of properties, including properties not exhibited by the parents. Computational methods that use information from structures and sequence alignments have been used to design highly functional chimeras and chimera libraries. Recombination has generated proteins with diverse thermostability and mechanical stability, enzyme substrate specificity, and optogenetic properties. Linear regression, Gaussian processes, and support vector machine learning have been used to model sequence-function relationships and predict useful chimeras. These approaches enable engineering of protein chimeras with desired functions, as well as elucidation of the structural basis for these functions.

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