The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70

Chaperone-mediated autophagy (CMA) is a unique proteolytic pathway, in which cytoplasmic proteins recognized by HSPA8/Hsc70 (heat shock protein 8) are transported into lysosomes for degradation. LAMP2A (lysosomal-associated membrane protein 2A) recruits the substrate/chaperone complex to the lysosom...

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Main Authors: Yuta Ikami, Kazue Terasawa, Tetsuro Watabe, Shigeyuki Yokoyama, Miki Hara-Yokoyama
Format: Article
Language:English
Published: Taylor & Francis Group 2022-12-01
Series:Autophagy Reports
Subjects:
Online Access:http://dx.doi.org/10.1080/27694127.2022.2069968
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author Yuta Ikami
Kazue Terasawa
Tetsuro Watabe
Shigeyuki Yokoyama
Miki Hara-Yokoyama
author_facet Yuta Ikami
Kazue Terasawa
Tetsuro Watabe
Shigeyuki Yokoyama
Miki Hara-Yokoyama
author_sort Yuta Ikami
collection DOAJ
description Chaperone-mediated autophagy (CMA) is a unique proteolytic pathway, in which cytoplasmic proteins recognized by HSPA8/Hsc70 (heat shock protein 8) are transported into lysosomes for degradation. LAMP2A (lysosomal-associated membrane protein 2A) recruits the substrate/chaperone complex to the lysosome membrane. The structure of LAMP2A comprises a large lumenal domain composed of two homologous subdomains (N-domain and C-domain, both with the β-prism fold), a transmembrane domain, and a short cytoplasmic tail. Although the homophilic interaction between LAMP2A molecules and the interaction between HSPA8 and LAMP2A have been suggested, whether the interactions are direct or mediated by other molecules has remained to be elucidated. We investigated the interactions by using expanded genetic code technologies that generate photo-crosslinking and/or steric hindrance at specified interfaces in mammalian cells. The results suggested that LAMP2A molecules assemble by facing each other with one side of the β-prism in their C-domains. We also detected the photo-crosslinking between the cytoplasmic tail of LAMP2A and HSPA8, revealing this direct interaction. We found that the truncation of the N-domain reduced the amount of HSPA8 that coimmunoprecipitates with LAMP2A. Our present results suggest that the two-domain architecture of the lumenal domains of LAMP2A underlies the interaction with HSPA8 at the cytoplasmic surface of the lysosome.
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spelling doaj.art-0403bdb1e17d47d1a55f0df69dd752a52023-09-14T13:24:40ZengTaylor & Francis GroupAutophagy Reports2769-41272022-12-011120520910.1080/27694127.2022.20699682069968The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70Yuta Ikami0Kazue Terasawa1Tetsuro Watabe2Shigeyuki Yokoyama3Miki Hara-Yokoyama4Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU)Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU)Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU)RIKEN Cluster for Science, Technology and Innovation HubGraduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU)Chaperone-mediated autophagy (CMA) is a unique proteolytic pathway, in which cytoplasmic proteins recognized by HSPA8/Hsc70 (heat shock protein 8) are transported into lysosomes for degradation. LAMP2A (lysosomal-associated membrane protein 2A) recruits the substrate/chaperone complex to the lysosome membrane. The structure of LAMP2A comprises a large lumenal domain composed of two homologous subdomains (N-domain and C-domain, both with the β-prism fold), a transmembrane domain, and a short cytoplasmic tail. Although the homophilic interaction between LAMP2A molecules and the interaction between HSPA8 and LAMP2A have been suggested, whether the interactions are direct or mediated by other molecules has remained to be elucidated. We investigated the interactions by using expanded genetic code technologies that generate photo-crosslinking and/or steric hindrance at specified interfaces in mammalian cells. The results suggested that LAMP2A molecules assemble by facing each other with one side of the β-prism in their C-domains. We also detected the photo-crosslinking between the cytoplasmic tail of LAMP2A and HSPA8, revealing this direct interaction. We found that the truncation of the N-domain reduced the amount of HSPA8 that coimmunoprecipitates with LAMP2A. Our present results suggest that the two-domain architecture of the lumenal domains of LAMP2A underlies the interaction with HSPA8 at the cytoplasmic surface of the lysosome.http://dx.doi.org/10.1080/27694127.2022.2069968chaperone-mediated autophagyexpanded genetic codeshspa8lamp2asite-specific photo-crosslinkingsite-specific steric hindrance
spellingShingle Yuta Ikami
Kazue Terasawa
Tetsuro Watabe
Shigeyuki Yokoyama
Miki Hara-Yokoyama
The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
Autophagy Reports
chaperone-mediated autophagy
expanded genetic codes
hspa8
lamp2a
site-specific photo-crosslinking
site-specific steric hindrance
title The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
title_full The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
title_fullStr The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
title_full_unstemmed The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
title_short The two-domain architecture of LAMP2A within the lysosomal lumen regulates its interaction with HSPA8/Hsc70
title_sort two domain architecture of lamp2a within the lysosomal lumen regulates its interaction with hspa8 hsc70
topic chaperone-mediated autophagy
expanded genetic codes
hspa8
lamp2a
site-specific photo-crosslinking
site-specific steric hindrance
url http://dx.doi.org/10.1080/27694127.2022.2069968
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