Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin

Abstract Peptide multifunctionalization is a crucial technique to develop peptide‐based agents for various purposes. Porphyrin‐peptide conjugates are a class of popular multifunctional peptides renowned for their multifunctional and multimodal properties. However, the tedious synthetic works for por...

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Main Authors: Yue Wu, Yuen‐Ting Wong, Yik‐Hoi Yeung, Pak‐Lun Lam, Ho‐Fai Chau, Wing‐Sze Tam, Qian Zhang, William C. S. Tai, Ka‐Leung Wong
Format: Article
Language:English
Published: Wiley 2025-04-01
Series:Advanced Science
Subjects:
Online Access:https://doi.org/10.1002/advs.202409771
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author Yue Wu
Yuen‐Ting Wong
Yik‐Hoi Yeung
Pak‐Lun Lam
Ho‐Fai Chau
Wing‐Sze Tam
Qian Zhang
William C. S. Tai
Ka‐Leung Wong
author_facet Yue Wu
Yuen‐Ting Wong
Yik‐Hoi Yeung
Pak‐Lun Lam
Ho‐Fai Chau
Wing‐Sze Tam
Qian Zhang
William C. S. Tai
Ka‐Leung Wong
author_sort Yue Wu
collection DOAJ
description Abstract Peptide multifunctionalization is a crucial technique to develop peptide‐based agents for various purposes. Porphyrin‐peptide conjugates are a class of popular multifunctional peptides renowned for their multifunctional and multimodal properties. However, the tedious synthetic works for porphyrin building blocks are involved in most previous studies. In this work, a modular solid‐phase synthetic approach is reported to construct trans‐AB2C porphyrin on peptide chains without presynthesized porphyrin building blocks. The products from this approach, which inherit both functionalities from the porphyrins and the modules employed for constructing porphyrins, show potential in biomedical and biomaterial applications. Furthermore, by extending this synthetic approach, the first example of “resin‐to‐resin” reaction is reported to link two peptides together along the construction of porphyrin motifs to give porphyrin‐peptide conjugates with two different peptide chains.
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issn 2198-3844
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publishDate 2025-04-01
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series Advanced Science
spelling doaj-art-3525b108bcb842e5806b2c96d7b07d602025-08-20T02:16:22ZengWileyAdvanced Science2198-38442025-04-011214n/an/a10.1002/advs.202409771Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on ResinYue Wu0Yuen‐Ting Wong1Yik‐Hoi Yeung2Pak‐Lun Lam3Ho‐Fai Chau4Wing‐Sze Tam5Qian Zhang6William C. S. Tai7Ka‐Leung Wong8Department of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Chemistry Hong Kong Baptist University 224 Waterloo Rd, Kowloon Tong Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaDepartment of Applied Biology and Chemical Technology The Hong Kong Polytechnic University 11 Yuk Choi Rd, Hung Hom Hong Kong SAR ChinaAbstract Peptide multifunctionalization is a crucial technique to develop peptide‐based agents for various purposes. Porphyrin‐peptide conjugates are a class of popular multifunctional peptides renowned for their multifunctional and multimodal properties. However, the tedious synthetic works for porphyrin building blocks are involved in most previous studies. In this work, a modular solid‐phase synthetic approach is reported to construct trans‐AB2C porphyrin on peptide chains without presynthesized porphyrin building blocks. The products from this approach, which inherit both functionalities from the porphyrins and the modules employed for constructing porphyrins, show potential in biomedical and biomaterial applications. Furthermore, by extending this synthetic approach, the first example of “resin‐to‐resin” reaction is reported to link two peptides together along the construction of porphyrin motifs to give porphyrin‐peptide conjugates with two different peptide chains.https://doi.org/10.1002/advs.202409771multifunctional peptidepeptide ligationporphyrinporphyrin‐peptide conjugatessolid‐phase peptide synthesis
spellingShingle Yue Wu
Yuen‐Ting Wong
Yik‐Hoi Yeung
Pak‐Lun Lam
Ho‐Fai Chau
Wing‐Sze Tam
Qian Zhang
William C. S. Tai
Ka‐Leung Wong
Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
Advanced Science
multifunctional peptide
peptide ligation
porphyrin
porphyrin‐peptide conjugates
solid‐phase peptide synthesis
title Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
title_full Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
title_fullStr Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
title_full_unstemmed Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
title_short Peptide Multifunctionalization via Modular Construction of Trans‐AB2C Porphyrin on Resin
title_sort peptide multifunctionalization via modular construction of trans ab2c porphyrin on resin
topic multifunctional peptide
peptide ligation
porphyrin
porphyrin‐peptide conjugates
solid‐phase peptide synthesis
url https://doi.org/10.1002/advs.202409771
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