Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding
Abstract Importin-(Imp)β family nucleocytoplasmic transport receptors (NTRs) are supposed to bind to their cargoes through interaction between a confined interface on an NTR and a nuclear localization or export signal (NLS/NES) on a cargo. Although consensus NLS/NES sequence motifs have been defined...
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doaj-6b43ca5febed4816aa0bd0d30fecb8b42021-08-08T11:23:01ZengNature Publishing GroupScientific Reports2045-23222021-08-0111111710.1038/s41598-021-94948-1Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo bindingMakoto Kimura0Kenichiro Imai1Yuriko Morinaka2Yoshiko Hosono-Sakuma3Paul Horton4Naoko Imamoto5Cellular Dynamics Laboratory, RIKEN Cluster for Pioneering ResearchCellular and Molecular Biotechnology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST)Cellular Dynamics Laboratory, RIKEN Cluster for Pioneering ResearchCellular Dynamics Laboratory, RIKEN Cluster for Pioneering ResearchDepartment of Computer Science and Information Engineering, National Cheng Kung UniversityCellular Dynamics Laboratory, RIKEN Cluster for Pioneering ResearchAbstract Importin-(Imp)β family nucleocytoplasmic transport receptors (NTRs) are supposed to bind to their cargoes through interaction between a confined interface on an NTR and a nuclear localization or export signal (NLS/NES) on a cargo. Although consensus NLS/NES sequence motifs have been defined for cargoes of some NTRs, many experimentally identified cargoes of those NTRs lack those motifs, and consensus NLSs/NESs have been reported for only a few NTRs. Crystal structures of NTR–cargo complexes have exemplified 3D structure-dependent binding of cargoes lacking a consensus NLS/NES to different sites on an NTR. Since only a limited number of NTR–cargo interactions have been studied, whether most cargoes lacking a consensus NLS/NES bind to the same confined interface or to various sites on an NTR is still unclear. Addressing this issue, we generated four mutants of transportin-(Trn)SR, of which many cargoes lack a consensus NLS, and eight mutants of Imp13, where no consensus NLS has been defined, and we analyzed their binding to as many as 40 cargo candidates that we previously identified by a nuclear import reaction-based method. The cargoes bind differently to the NTR mutants, suggesting that positions on an NTR contribute differently to the binding of respective cargoes.https://doi.org/10.1038/s41598-021-94948-1 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Makoto Kimura Kenichiro Imai Yuriko Morinaka Yoshiko Hosono-Sakuma Paul Horton Naoko Imamoto |
spellingShingle |
Makoto Kimura Kenichiro Imai Yuriko Morinaka Yoshiko Hosono-Sakuma Paul Horton Naoko Imamoto Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding Scientific Reports |
author_facet |
Makoto Kimura Kenichiro Imai Yuriko Morinaka Yoshiko Hosono-Sakuma Paul Horton Naoko Imamoto |
author_sort |
Makoto Kimura |
title |
Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding |
title_short |
Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding |
title_full |
Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding |
title_fullStr |
Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding |
title_full_unstemmed |
Distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-SR and importin-13 affect specific cargo binding |
title_sort |
distinct mutations in importin-β family nucleocytoplasmic transport receptors transportin-sr and importin-13 affect specific cargo binding |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-08-01 |
description |
Abstract Importin-(Imp)β family nucleocytoplasmic transport receptors (NTRs) are supposed to bind to their cargoes through interaction between a confined interface on an NTR and a nuclear localization or export signal (NLS/NES) on a cargo. Although consensus NLS/NES sequence motifs have been defined for cargoes of some NTRs, many experimentally identified cargoes of those NTRs lack those motifs, and consensus NLSs/NESs have been reported for only a few NTRs. Crystal structures of NTR–cargo complexes have exemplified 3D structure-dependent binding of cargoes lacking a consensus NLS/NES to different sites on an NTR. Since only a limited number of NTR–cargo interactions have been studied, whether most cargoes lacking a consensus NLS/NES bind to the same confined interface or to various sites on an NTR is still unclear. Addressing this issue, we generated four mutants of transportin-(Trn)SR, of which many cargoes lack a consensus NLS, and eight mutants of Imp13, where no consensus NLS has been defined, and we analyzed their binding to as many as 40 cargo candidates that we previously identified by a nuclear import reaction-based method. The cargoes bind differently to the NTR mutants, suggesting that positions on an NTR contribute differently to the binding of respective cargoes. |
url |
https://doi.org/10.1038/s41598-021-94948-1 |
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