| Literature DB >> 24268647 |
Hung-Ju Hsu1, Kuo Hao Lee2, Jhih-Wei Jian3, Hung-Ju Chang4, Chung-Ming Yu2, Yu-Ching Lee2, Ing-Chien Chen2, Hung-Pin Peng3, Chih Yuan Wu2, Yu-Feng Huang2, Chih-Yun Shao5, Kuo Ping Chiu2, An-Suei Yang6.
Abstract
Protein structural stability and biological functionality are dictated by the formation of intradomain cores and interdomain interfaces, but the intricate sequence-structure-function interrelationships in the packing of protein cores and interfaces remain difficult to elucidate due to the intractability of enumerating all packing possibilities and assessing the consequences of all the variations. In this work, groups of β strand residues of model antibody variable domains were randomized with saturated mutagenesis and the functional variants were selected for high-throughput sequencing and high-throughput thermal stability measurements. The results show that the sequence preferences of the intradomain hydrophobic core residues are strikingly flexible among hydrophobic residues, implying that these residues are coupled indirectly with antigen binding through energetic stabilization of the protein structures. By contrast, the interdomain interface residues are directly coupled with antigen binding. The interdomain interface should be treated as an integral part of the antigen-binding site.Mesh:
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Year: 2013 PMID: 24268647 DOI: 10.1016/j.str.2013.10.006
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006