Cargando…

The role of streptavidin and its variants in catalysis by biotinylated secondary amines

Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics simulations to investigate how the protein structure affects iminium catalysis by biotinylated secondary amines in a model 1,4 conjugate addition reaction. Monomeric streptavidin (M-Sav) lacks a quaterna...

Descripción completa

Detalles Bibliográficos
Autores principales: Nödling, Alexander R., Santi, Nicolò, Castillo, Raquel, Lipka-Lloyd, Magdalena, Jin, Yi, Morrill, Louis C., Świderek, Katarzyna, Moliner, Vicent, Luk, Louis Y. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8652411/
https://www.ncbi.nlm.nih.gov/pubmed/34825690
http://dx.doi.org/10.1039/d1ob01947c
_version_ 1784611589477892096
author Nödling, Alexander R.
Santi, Nicolò
Castillo, Raquel
Lipka-Lloyd, Magdalena
Jin, Yi
Morrill, Louis C.
Świderek, Katarzyna
Moliner, Vicent
Luk, Louis Y. P.
author_facet Nödling, Alexander R.
Santi, Nicolò
Castillo, Raquel
Lipka-Lloyd, Magdalena
Jin, Yi
Morrill, Louis C.
Świderek, Katarzyna
Moliner, Vicent
Luk, Louis Y. P.
author_sort Nödling, Alexander R.
collection PubMed
description Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics simulations to investigate how the protein structure affects iminium catalysis by biotinylated secondary amines in a model 1,4 conjugate addition reaction. Monomeric streptavidin (M-Sav) lacks a quaternary structure and the solvent-exposed reaction site resulted in poor product conversion in the model reaction with low enantio- and regioselectivities. These parameters were much improved when the tetrameric host T-Sav was used; indeed, residues at the symmetrical subunit interface were proven to be critical for catalysis through a mutagenesis study. The use of QM/MM simulations and the asymmetric dimeric variant D-Sav revealed that both Lys121 residues which are located in the hosting and neighboring subunits play a critical role in controlling the stereoselectivity and reactivity. Lastly, the D-Sav template, though providing a lower conversion than that of the symmetric tetrameric counterpart, is likely a better starting point for future protein engineering because each surrounding residue within the asymmetric scaffold can be refined for secondary amine catalysis.
format Online
Article
Text
id pubmed-8652411
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-86524112021-12-30 The role of streptavidin and its variants in catalysis by biotinylated secondary amines Nödling, Alexander R. Santi, Nicolò Castillo, Raquel Lipka-Lloyd, Magdalena Jin, Yi Morrill, Louis C. Świderek, Katarzyna Moliner, Vicent Luk, Louis Y. P. Org Biomol Chem Chemistry Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics simulations to investigate how the protein structure affects iminium catalysis by biotinylated secondary amines in a model 1,4 conjugate addition reaction. Monomeric streptavidin (M-Sav) lacks a quaternary structure and the solvent-exposed reaction site resulted in poor product conversion in the model reaction with low enantio- and regioselectivities. These parameters were much improved when the tetrameric host T-Sav was used; indeed, residues at the symmetrical subunit interface were proven to be critical for catalysis through a mutagenesis study. The use of QM/MM simulations and the asymmetric dimeric variant D-Sav revealed that both Lys121 residues which are located in the hosting and neighboring subunits play a critical role in controlling the stereoselectivity and reactivity. Lastly, the D-Sav template, though providing a lower conversion than that of the symmetric tetrameric counterpart, is likely a better starting point for future protein engineering because each surrounding residue within the asymmetric scaffold can be refined for secondary amine catalysis. The Royal Society of Chemistry 2021-11-15 /pmc/articles/PMC8652411/ /pubmed/34825690 http://dx.doi.org/10.1039/d1ob01947c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Nödling, Alexander R.
Santi, Nicolò
Castillo, Raquel
Lipka-Lloyd, Magdalena
Jin, Yi
Morrill, Louis C.
Świderek, Katarzyna
Moliner, Vicent
Luk, Louis Y. P.
The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title_full The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title_fullStr The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title_full_unstemmed The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title_short The role of streptavidin and its variants in catalysis by biotinylated secondary amines
title_sort role of streptavidin and its variants in catalysis by biotinylated secondary amines
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8652411/
https://www.ncbi.nlm.nih.gov/pubmed/34825690
http://dx.doi.org/10.1039/d1ob01947c
work_keys_str_mv AT nodlingalexanderr theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT santinicolo theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT castilloraquel theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT lipkalloydmagdalena theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT jinyi theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT morrilllouisc theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT swiderekkatarzyna theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT molinervicent theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT luklouisyp theroleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT nodlingalexanderr roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT santinicolo roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT castilloraquel roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT lipkalloydmagdalena roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT jinyi roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT morrilllouisc roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT swiderekkatarzyna roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT molinervicent roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines
AT luklouisyp roleofstreptavidinanditsvariantsincatalysisbybiotinylatedsecondaryamines