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Chemical synthesis of Torenia plant pollen tube attractant proteins by KAHA ligation.


ABSTRACT: The synthesis of secreted cysteine-rich proteins (CRPs) is a long-standing challenge due to protein aggregation and premature formation of inter- and intramolecular disulfide bonds. Chemical synthesis provides reduced CRPs with a higher purity, which is advantageous for folding and isolation. Herein, we report the chemical synthesis of pollen tube attractant CRPs Torenia fournieri LURE (TfLURE) and Torenia concolor LURE (TcLURE) and their chimeric analogues via α-ketoacid-hydroxylamine (KAHA) ligation. The bioactivity of chemically synthesized TfLURE protein was shown to be comparable to E. coli expressed recombinant protein through in vitro assay. The convergent protein synthesis approach is beneficial for preparing these small protein variants efficiently.

SUBMITTER: Kumarswamyreddy N 

PROVIDER: S-EPMC9175099 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Chemical synthesis of <i>Torenia</i> plant pollen tube attractant proteins by KAHA ligation.

Kumarswamyreddy Nandarapu N   Reddy Damodara N DN   Robkis D Miklos DM   Kamiya Nao N   Tsukamoto Ryoko R   Kanaoka Masahiro M MM   Higashiyama Tetsuya T   Oishi Shunsuke S   Bode Jeffrey W JW  

RSC chemical biology 20220318 6


The synthesis of secreted cysteine-rich proteins (CRPs) is a long-standing challenge due to protein aggregation and premature formation of inter- and intramolecular disulfide bonds. Chemical synthesis provides reduced CRPs with a higher purity, which is advantageous for folding and isolation. Herein, we report the chemical synthesis of pollen tube attractant CRPs <i>Torenia fournieri</i> LURE (TfLURE) and <i>Torenia concolor</i> LURE (TcLURE) and their chimeric analogues <i>via</i> α-ketoacid-hy  ...[more]

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