Cargando…
The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane
Matriptase plays important roles in epithelial integrity and function, which depend on its sorting to the basolateral surface of cells, where matriptase zymogen is converted to an active enzyme in order to act on its substrates. After activation, matriptase undergoes HAI-1-mediated inhibition, inter...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015431/ https://www.ncbi.nlm.nih.gov/pubmed/32049977 http://dx.doi.org/10.1371/journal.pone.0228874 |
_version_ | 1783496796876570624 |
---|---|
author | Tseng, Chun-Che Jia, Bailing Barndt, Robert B. Dai, Yang-Hong Chen, Yu Hsin Du, Po-Wen A. Wang, Jehng-Kang Tang, Hung-Jen Lin, Chen-Yong Johnson, Michael D. |
author_facet | Tseng, Chun-Che Jia, Bailing Barndt, Robert B. Dai, Yang-Hong Chen, Yu Hsin Du, Po-Wen A. Wang, Jehng-Kang Tang, Hung-Jen Lin, Chen-Yong Johnson, Michael D. |
author_sort | Tseng, Chun-Che |
collection | PubMed |
description | Matriptase plays important roles in epithelial integrity and function, which depend on its sorting to the basolateral surface of cells, where matriptase zymogen is converted to an active enzyme in order to act on its substrates. After activation, matriptase undergoes HAI-1-mediated inhibition, internalization, transcytosis, and secretion from the apical surface into the lumen. Matriptase is a mosaic protein with several distinct protein domains and motifs, which are a reflection of matriptase’s complex cellular itinerary, life cycle, and the tight control of its enzymatic activity. While the molecular determinants for various matriptase regulatory events have been identified, the motif(s) required for translocation of human matriptase to the basolateral plasma membrane is unknown. The motif previously identified in rat matriptase is not conserved between the rodent and the primate. We, here, revisit the question for human matriptase through the use of a fusion protein containing a green fluorescent protein linked to the matriptase N-terminal fragment ending at Gly-149. A conserved seven amino acid motif EEGEVFL, which is similar to the monoleucine C-terminal to an acidic cluster motif involved in the basolateral targeting for some growth factors, has been shown to be required for matriptase translocation to the basolateral plasma membrane of polarized MDCK cells. Furthermore, time-lapse video microscopy showed that the motif appears to be required for entry into the correct transport vesicles, by which matriptase can undergo rapid trafficking and translocate to the plasma membrane. Our study reveals that the EEGEVFL motif is necessary, but may not be sufficient, for matriptase basolateral membrane targeting and serves as the basis for further research on its pathophysiological roles. |
format | Online Article Text |
id | pubmed-7015431 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-70154312020-02-26 The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane Tseng, Chun-Che Jia, Bailing Barndt, Robert B. Dai, Yang-Hong Chen, Yu Hsin Du, Po-Wen A. Wang, Jehng-Kang Tang, Hung-Jen Lin, Chen-Yong Johnson, Michael D. PLoS One Research Article Matriptase plays important roles in epithelial integrity and function, which depend on its sorting to the basolateral surface of cells, where matriptase zymogen is converted to an active enzyme in order to act on its substrates. After activation, matriptase undergoes HAI-1-mediated inhibition, internalization, transcytosis, and secretion from the apical surface into the lumen. Matriptase is a mosaic protein with several distinct protein domains and motifs, which are a reflection of matriptase’s complex cellular itinerary, life cycle, and the tight control of its enzymatic activity. While the molecular determinants for various matriptase regulatory events have been identified, the motif(s) required for translocation of human matriptase to the basolateral plasma membrane is unknown. The motif previously identified in rat matriptase is not conserved between the rodent and the primate. We, here, revisit the question for human matriptase through the use of a fusion protein containing a green fluorescent protein linked to the matriptase N-terminal fragment ending at Gly-149. A conserved seven amino acid motif EEGEVFL, which is similar to the monoleucine C-terminal to an acidic cluster motif involved in the basolateral targeting for some growth factors, has been shown to be required for matriptase translocation to the basolateral plasma membrane of polarized MDCK cells. Furthermore, time-lapse video microscopy showed that the motif appears to be required for entry into the correct transport vesicles, by which matriptase can undergo rapid trafficking and translocate to the plasma membrane. Our study reveals that the EEGEVFL motif is necessary, but may not be sufficient, for matriptase basolateral membrane targeting and serves as the basis for further research on its pathophysiological roles. Public Library of Science 2020-02-12 /pmc/articles/PMC7015431/ /pubmed/32049977 http://dx.doi.org/10.1371/journal.pone.0228874 Text en © 2020 Tseng et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Tseng, Chun-Che Jia, Bailing Barndt, Robert B. Dai, Yang-Hong Chen, Yu Hsin Du, Po-Wen A. Wang, Jehng-Kang Tang, Hung-Jen Lin, Chen-Yong Johnson, Michael D. The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title | The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title_full | The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title_fullStr | The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title_full_unstemmed | The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title_short | The intracellular seven amino acid motif EEGEVFL is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
title_sort | intracellular seven amino acid motif eegevfl is required for matriptase vesicle sorting and translocation to the basolateral plasma membrane |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7015431/ https://www.ncbi.nlm.nih.gov/pubmed/32049977 http://dx.doi.org/10.1371/journal.pone.0228874 |
work_keys_str_mv | AT tsengchunche theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT jiabailing theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT barndtrobertb theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT daiyanghong theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT chenyuhsin theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT dupowena theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT wangjehngkang theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT tanghungjen theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT linchenyong theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT johnsonmichaeld theintracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT tsengchunche intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT jiabailing intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT barndtrobertb intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT daiyanghong intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT chenyuhsin intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT dupowena intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT wangjehngkang intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT tanghungjen intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT linchenyong intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane AT johnsonmichaeld intracellularsevenaminoacidmotifeegevflisrequiredformatriptasevesiclesortingandtranslocationtothebasolateralplasmamembrane |