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dc.contributor.authorJiang, Han-Kaien_US
dc.contributor.authorLee, Man-Neeen_US
dc.contributor.authorTsou, Jo-Chuen_US
dc.contributor.authorChang, Kuan-Wenen_US
dc.contributor.authorTseng, Hsueh-Weien_US
dc.contributor.authorChen, Kuang-Poen_US
dc.contributor.authorLi, Yaw-Kuenen_US
dc.contributor.authorWang, Yane-Shihen_US
dc.date.accessioned2020-07-01T05:21:21Z-
dc.date.available2020-07-01T05:21:21Z-
dc.date.issued2020-04-07en_US
dc.identifier.issn2296-4185en_US
dc.identifier.urihttp://dx.doi.org/10.3389/fbioe.2020.00235en_US
dc.identifier.urihttp://hdl.handle.net/11536/154436-
dc.description.abstractThe Methanosarcina mazei pyrrolysyl-tRNA synthetase (PylRS).tRNA(Pyl) pair can be used to incorporate non-canonical amino acids (ncAAs) into proteins at installed amber stop codons. Although engineering of the PylRS active site generates diverse binding pockets, the substrate ranges are found similar in charging lysine and phenylalanine analogs. To expand the diversity of the ncAA side chains that can be incorporated via the PylRS.tRNA(Pyl) pair, exploring remote interactions beyond the active site is an emerging approach in expanding the genetic code research. In this work, remote interactions between tRNA(Pyl), the tRNA binding domain of PylRS, and/or an introduced non-structured linker between the N- and C-terminus of PylRS were studied. The substrate range of the PylRS.tRNA(Pyl) pair was visualized by producing sfGFP-UAG gene products, which also indicated amber suppression efficiencies and substrate specificity. The unstructured loop linking the N-terminal and C-terminal domains (CTDs) of PylRS has been suggested to regulate the interaction between PylRS and tRNA(Pyl). In exploring the detailed role of the loop region, different lengths of the linker were inserted into the junction between the N-terminal and the C-terminal domains of PylRS to unearth the impact on remote effects. Our findings suggest that the insertion of a moderate-length linker tunes the interface between PylRS and tRNA(Pyl) and subsequently leads to improved suppression efficiencies. The suppression activity and the substrate specificity of PylRS were altered by introducing three mutations at or near the N-terminal domain of PylRS (N-PylRS). Using a N-PylRS.tRNA(Pyl) pair, three ncAA substrates, two S-benzyl cysteine and a histidine analog, were incorporated into the protein site specifically.en_US
dc.language.isoen_USen_US
dc.subjectnon-canonical amino acidsen_US
dc.subjectpyrrolysyl-tRNA synthetaseen_US
dc.subjectlinker engineeringen_US
dc.subjectamber codon suppressionen_US
dc.subjecttRNA binding domainen_US
dc.titleLinker and N-Terminal Domain Engineering of Pyrrolysyl-tRNA Synthetase for Substrate Range Shifting and Activity Enhancementen_US
dc.typeArticleen_US
dc.identifier.doi10.3389/fbioe.2020.00235en_US
dc.identifier.journalFRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGYen_US
dc.citation.volume8en_US
dc.citation.spage0en_US
dc.citation.epage0en_US
dc.contributor.department應用化學系zh_TW
dc.contributor.departmentDepartment of Applied Chemistryen_US
dc.identifier.wosnumberWOS:000528852200001en_US
dc.citation.woscount0en_US
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