8ts5
From Proteopedia
Structure of the apo FabS1C_C1
Structural highlights
Publication Abstract from PubMedThe atomic-resolution structural information that X-ray crystallography can provide on the binding interface between a Fab and its cognate antigen is highly valuable for understanding the mechanism of interaction. However, many Fab:antigen complexes are recalcitrant to crystallization, making the endeavor a considerable effort with no guarantee of success. Consequently, there have been significant steps taken to increase the likelihood of Fab:antigen complex crystallization by altering the Fab framework. In this investigation, we applied the surface entropy reduction strategy coupled with phage-display technology to identify a set of surface substitutions that improve the propensity of a human Fab framework to crystallize. In addition, we showed that combining these surface substitutions with previously reported Crystal Kappa and elbow substitutions results in an extraordinary improvement in Fab and Fab:antigen complex crystallisability, revealing a strong synergistic relationship between these sets of substitutions. Through comprehensive Fab and Fab:antigen complex crystallization screenings followed by structure determination and analysis, we defined the roles that each of these substitutions play in facilitating crystallization and how they complement each other in the process. This article is protected by copyright. All rights reserved. Engineered Antigen-Binding Fragments for Enhanced Crystallization of Antibody:Antigen Complexes.,Bruce HA, Singer AU, Filippova EV, Blazer LL, Adams JJ, Enderle L, Ben-David M, Radley EH, Mao DYL, Pau V, Orlicky S, Sicheri F, Kourinov I, Atwell S, Kossiakoff AA, Sidhu SS Protein Sci. 2023 Nov 9:e4824. doi: 10.1002/pro.4824. PMID:37945533[1] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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Categories: Homo sapiens | Large Structures | Adams JJ | Blazer LL | Bruce HA | Sicheri F | Sidhu SS | Singer AU