Cargando…

Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides

[Image: see text] Currently, antibodies are widely used not only in research but also in therapy. Hence, peptides that selectively bind to the fragment crystallizable site of an antibody have been extensively utilized in various research efforts such as the preparation of antibody–drug conjugates (A...

Descripción completa

Detalles Bibliográficos
Autores principales: Muguruma, Kyohei, Fujita, Konomi, Fukuda, Akane, Kishimoto, Satoshi, Sakamoto, Soichiro, Arima, Risako, Ito, Mayu, Kawasaki, Mayu, Nakano, Shogo, Ito, Sohei, Shimizu, Kanade, Taguchi, Akihiro, Takayama, Kentaro, Taniguchi, Atsuhiko, Ito, Yuji, Hayashi, Yoshio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6740044/
https://www.ncbi.nlm.nih.gov/pubmed/31528791
http://dx.doi.org/10.1021/acsomega.9b01104
_version_ 1783451041648345088
author Muguruma, Kyohei
Fujita, Konomi
Fukuda, Akane
Kishimoto, Satoshi
Sakamoto, Soichiro
Arima, Risako
Ito, Mayu
Kawasaki, Mayu
Nakano, Shogo
Ito, Sohei
Shimizu, Kanade
Taguchi, Akihiro
Takayama, Kentaro
Taniguchi, Atsuhiko
Ito, Yuji
Hayashi, Yoshio
author_facet Muguruma, Kyohei
Fujita, Konomi
Fukuda, Akane
Kishimoto, Satoshi
Sakamoto, Soichiro
Arima, Risako
Ito, Mayu
Kawasaki, Mayu
Nakano, Shogo
Ito, Sohei
Shimizu, Kanade
Taguchi, Akihiro
Takayama, Kentaro
Taniguchi, Atsuhiko
Ito, Yuji
Hayashi, Yoshio
author_sort Muguruma, Kyohei
collection PubMed
description [Image: see text] Currently, antibodies are widely used not only in research but also in therapy. Hence, peptides that selectively bind to the fragment crystallizable site of an antibody have been extensively utilized in various research efforts such as the preparation of antibody–drug conjugates (ADC). Consequently, appropriate peptides that bind to immunoglobulin G (IgG) with a specific K(d) value and also k(on) and k(off) values will be useful in different applications, and these kinetic parameters have been perhaps overlooked but are key to development of peptide ligands with advantageous binding properties. We prepared structural derivatives of IgG-binding peptide 1 and evaluated the binding affinity and kinetic rates of the products by surface plasmon resonance assay and isothermal titration calorimetry to obtain novel peptides with beneficial antibody binding properties. In this way, 15-Lys8Leu with fast-binding and slow-release features was obtained through a shortened peptide 15-IgBP. On the other hand, we successfully obtained distinctive peptide, 15-Lys8Tle, with a similar K(d) value but with k(on) and k(off) values that were as much as six-fold different from those of 15-IgBP. These new peptides are useful for the elucidation of kinetic effects on the function of IgG-binding peptides and various applications of antibody or antibody–drug interactions, such as immunoliposome, ADC, or half-life extension strategy, by using a peptide with the appropriate kinetic features.
format Online
Article
Text
id pubmed-6740044
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-67400442019-09-16 Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides Muguruma, Kyohei Fujita, Konomi Fukuda, Akane Kishimoto, Satoshi Sakamoto, Soichiro Arima, Risako Ito, Mayu Kawasaki, Mayu Nakano, Shogo Ito, Sohei Shimizu, Kanade Taguchi, Akihiro Takayama, Kentaro Taniguchi, Atsuhiko Ito, Yuji Hayashi, Yoshio ACS Omega [Image: see text] Currently, antibodies are widely used not only in research but also in therapy. Hence, peptides that selectively bind to the fragment crystallizable site of an antibody have been extensively utilized in various research efforts such as the preparation of antibody–drug conjugates (ADC). Consequently, appropriate peptides that bind to immunoglobulin G (IgG) with a specific K(d) value and also k(on) and k(off) values will be useful in different applications, and these kinetic parameters have been perhaps overlooked but are key to development of peptide ligands with advantageous binding properties. We prepared structural derivatives of IgG-binding peptide 1 and evaluated the binding affinity and kinetic rates of the products by surface plasmon resonance assay and isothermal titration calorimetry to obtain novel peptides with beneficial antibody binding properties. In this way, 15-Lys8Leu with fast-binding and slow-release features was obtained through a shortened peptide 15-IgBP. On the other hand, we successfully obtained distinctive peptide, 15-Lys8Tle, with a similar K(d) value but with k(on) and k(off) values that were as much as six-fold different from those of 15-IgBP. These new peptides are useful for the elucidation of kinetic effects on the function of IgG-binding peptides and various applications of antibody or antibody–drug interactions, such as immunoliposome, ADC, or half-life extension strategy, by using a peptide with the appropriate kinetic features. American Chemical Society 2019-08-28 /pmc/articles/PMC6740044/ /pubmed/31528791 http://dx.doi.org/10.1021/acsomega.9b01104 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Muguruma, Kyohei
Fujita, Konomi
Fukuda, Akane
Kishimoto, Satoshi
Sakamoto, Soichiro
Arima, Risako
Ito, Mayu
Kawasaki, Mayu
Nakano, Shogo
Ito, Sohei
Shimizu, Kanade
Taguchi, Akihiro
Takayama, Kentaro
Taniguchi, Atsuhiko
Ito, Yuji
Hayashi, Yoshio
Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title_full Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title_fullStr Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title_full_unstemmed Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title_short Kinetics-Based Structural Requirements of Human Immunoglobulin G Binding Peptides
title_sort kinetics-based structural requirements of human immunoglobulin g binding peptides
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6740044/
https://www.ncbi.nlm.nih.gov/pubmed/31528791
http://dx.doi.org/10.1021/acsomega.9b01104
work_keys_str_mv AT mugurumakyohei kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT fujitakonomi kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT fukudaakane kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT kishimotosatoshi kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT sakamotosoichiro kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT arimarisako kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT itomayu kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT kawasakimayu kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT nakanoshogo kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT itosohei kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT shimizukanade kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT taguchiakihiro kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT takayamakentaro kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT taniguchiatsuhiko kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT itoyuji kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides
AT hayashiyoshio kineticsbasedstructuralrequirementsofhumanimmunoglobulingbindingpeptides