Cargando…

Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2

ALG-2, a 22-kDa penta-EF-hand protein, is involved in cell death, signal transduction, membrane trafficking, etc., by interacting with various proteins in mammalian cells in a Ca(2+)-dependent manner. Most known ALG-2-interacting proteins contain proline-rich regions in which either PPYPXnYP (type 1...

Descripción completa

Detalles Bibliográficos
Autores principales: Takahashi, Takeshi, Kojima, Kyosuke, Zhang, Wei, Sasaki, Kanae, Ito, Masaru, Suzuki, Hironori, Kawasaki, Masato, Wakatsuki, Soichi, Takahara, Terunao, Shibata, Hideki, Maki, Masatoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4346919/
https://www.ncbi.nlm.nih.gov/pubmed/25667979
http://dx.doi.org/10.3390/ijms16023677
_version_ 1782359760485482496
author Takahashi, Takeshi
Kojima, Kyosuke
Zhang, Wei
Sasaki, Kanae
Ito, Masaru
Suzuki, Hironori
Kawasaki, Masato
Wakatsuki, Soichi
Takahara, Terunao
Shibata, Hideki
Maki, Masatoshi
author_facet Takahashi, Takeshi
Kojima, Kyosuke
Zhang, Wei
Sasaki, Kanae
Ito, Masaru
Suzuki, Hironori
Kawasaki, Masato
Wakatsuki, Soichi
Takahara, Terunao
Shibata, Hideki
Maki, Masatoshi
author_sort Takahashi, Takeshi
collection PubMed
description ALG-2, a 22-kDa penta-EF-hand protein, is involved in cell death, signal transduction, membrane trafficking, etc., by interacting with various proteins in mammalian cells in a Ca(2+)-dependent manner. Most known ALG-2-interacting proteins contain proline-rich regions in which either PPYPXnYP (type 1 motif) or PXPGF (type 2 motif) is commonly found. Previous X-ray crystal structural analysis of the complex between ALG-2 and an ALIX peptide revealed that the peptide binds to the two hydrophobic pockets. In the present study, we resolved the crystal structure of the complex between ALG-2 and a peptide of Sec31A (outer shell component of coat complex II, COPII; containing the type 2 motif) and found that the peptide binds to the third hydrophobic pocket (Pocket 3). While amino acid substitution of Phe(85), a Pocket 3 residue, with Ala abrogated the interaction with Sec31A, it did not affect the interaction with ALIX. On the other hand, amino acid substitution of Tyr(180), a Pocket 1 residue, with Ala caused loss of binding to ALIX, but maintained binding to Sec31A. We conclude that ALG-2 recognizes two types of motifs at different hydrophobic surfaces. Furthermore, based on the results of serial mutational analysis of the ALG-2-binding sites in Sec31A, the type 2 motif was newly defined.
format Online
Article
Text
id pubmed-4346919
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-43469192015-04-03 Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2 Takahashi, Takeshi Kojima, Kyosuke Zhang, Wei Sasaki, Kanae Ito, Masaru Suzuki, Hironori Kawasaki, Masato Wakatsuki, Soichi Takahara, Terunao Shibata, Hideki Maki, Masatoshi Int J Mol Sci Article ALG-2, a 22-kDa penta-EF-hand protein, is involved in cell death, signal transduction, membrane trafficking, etc., by interacting with various proteins in mammalian cells in a Ca(2+)-dependent manner. Most known ALG-2-interacting proteins contain proline-rich regions in which either PPYPXnYP (type 1 motif) or PXPGF (type 2 motif) is commonly found. Previous X-ray crystal structural analysis of the complex between ALG-2 and an ALIX peptide revealed that the peptide binds to the two hydrophobic pockets. In the present study, we resolved the crystal structure of the complex between ALG-2 and a peptide of Sec31A (outer shell component of coat complex II, COPII; containing the type 2 motif) and found that the peptide binds to the third hydrophobic pocket (Pocket 3). While amino acid substitution of Phe(85), a Pocket 3 residue, with Ala abrogated the interaction with Sec31A, it did not affect the interaction with ALIX. On the other hand, amino acid substitution of Tyr(180), a Pocket 1 residue, with Ala caused loss of binding to ALIX, but maintained binding to Sec31A. We conclude that ALG-2 recognizes two types of motifs at different hydrophobic surfaces. Furthermore, based on the results of serial mutational analysis of the ALG-2-binding sites in Sec31A, the type 2 motif was newly defined. MDPI 2015-02-06 /pmc/articles/PMC4346919/ /pubmed/25667979 http://dx.doi.org/10.3390/ijms16023677 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Takahashi, Takeshi
Kojima, Kyosuke
Zhang, Wei
Sasaki, Kanae
Ito, Masaru
Suzuki, Hironori
Kawasaki, Masato
Wakatsuki, Soichi
Takahara, Terunao
Shibata, Hideki
Maki, Masatoshi
Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title_full Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title_fullStr Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title_full_unstemmed Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title_short Structural Analysis of the Complex between Penta-EF-Hand ALG-2 Protein and Sec31A Peptide Reveals a Novel Target Recognition Mechanism of ALG-2
title_sort structural analysis of the complex between penta-ef-hand alg-2 protein and sec31a peptide reveals a novel target recognition mechanism of alg-2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4346919/
https://www.ncbi.nlm.nih.gov/pubmed/25667979
http://dx.doi.org/10.3390/ijms16023677
work_keys_str_mv AT takahashitakeshi structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT kojimakyosuke structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT zhangwei structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT sasakikanae structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT itomasaru structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT suzukihironori structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT kawasakimasato structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT wakatsukisoichi structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT takaharaterunao structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT shibatahideki structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2
AT makimasatoshi structuralanalysisofthecomplexbetweenpentaefhandalg2proteinandsec31apeptiderevealsanoveltargetrecognitionmechanismofalg2