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Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein

The N-Myc downstream-regulated gene (NDRG) family belongs to the α/β-hydrolase fold and is known to exert various physiologic functions in cell proliferation, differentiation, and hypoxia-induced cancer metabolism. In particular, NDRG3 is closely related to proliferation and migration of prostate ca...

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Autores principales: Kim, Kyung Rok, Kim, Kyung A., Park, Joon Sung, Jang, Jun Young, Choi, Yuri, Lee, Hyung Ho, Lee, Dong Chul, Park, Kyung Chan, Yeom, Young Il, Kim, Hyun-Jung, Han, Byung Woo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022630/
https://www.ncbi.nlm.nih.gov/pubmed/31935861
http://dx.doi.org/10.3390/biom10010090
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author Kim, Kyung Rok
Kim, Kyung A.
Park, Joon Sung
Jang, Jun Young
Choi, Yuri
Lee, Hyung Ho
Lee, Dong Chul
Park, Kyung Chan
Yeom, Young Il
Kim, Hyun-Jung
Han, Byung Woo
author_facet Kim, Kyung Rok
Kim, Kyung A.
Park, Joon Sung
Jang, Jun Young
Choi, Yuri
Lee, Hyung Ho
Lee, Dong Chul
Park, Kyung Chan
Yeom, Young Il
Kim, Hyun-Jung
Han, Byung Woo
author_sort Kim, Kyung Rok
collection PubMed
description The N-Myc downstream-regulated gene (NDRG) family belongs to the α/β-hydrolase fold and is known to exert various physiologic functions in cell proliferation, differentiation, and hypoxia-induced cancer metabolism. In particular, NDRG3 is closely related to proliferation and migration of prostate cancer cells, and recent studies reported its implication in lactate-triggered hypoxia responses or tumorigenesis. However, the underlying mechanism for the functions of NDRG3 remains unclear. Here, we report the crystal structure of human NDRG3 at 2.2 Å resolution, with six molecules in an asymmetric unit. While NDRG3 adopts the α/β-hydrolase fold, complete substitution of the canonical catalytic triad residues to non-reactive residues and steric hindrance around the pseudo-active site seem to disable the α/β-hydrolase activity. While NDRG3 shares a high similarity to NDRG2 in terms of amino acid sequence and structure, NDRG3 exhibited remarkable structural differences in a flexible loop corresponding to helix α6 of NDRG2 that is responsible for tumor suppression. Thus, this flexible loop region seems to play a distinct role in oncogenic progression induced by NDRG3. Collectively, our studies could provide structural and biophysical insights into the molecular characteristics of NDRG3.
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spelling pubmed-70226302020-03-09 Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein Kim, Kyung Rok Kim, Kyung A. Park, Joon Sung Jang, Jun Young Choi, Yuri Lee, Hyung Ho Lee, Dong Chul Park, Kyung Chan Yeom, Young Il Kim, Hyun-Jung Han, Byung Woo Biomolecules Article The N-Myc downstream-regulated gene (NDRG) family belongs to the α/β-hydrolase fold and is known to exert various physiologic functions in cell proliferation, differentiation, and hypoxia-induced cancer metabolism. In particular, NDRG3 is closely related to proliferation and migration of prostate cancer cells, and recent studies reported its implication in lactate-triggered hypoxia responses or tumorigenesis. However, the underlying mechanism for the functions of NDRG3 remains unclear. Here, we report the crystal structure of human NDRG3 at 2.2 Å resolution, with six molecules in an asymmetric unit. While NDRG3 adopts the α/β-hydrolase fold, complete substitution of the canonical catalytic triad residues to non-reactive residues and steric hindrance around the pseudo-active site seem to disable the α/β-hydrolase activity. While NDRG3 shares a high similarity to NDRG2 in terms of amino acid sequence and structure, NDRG3 exhibited remarkable structural differences in a flexible loop corresponding to helix α6 of NDRG2 that is responsible for tumor suppression. Thus, this flexible loop region seems to play a distinct role in oncogenic progression induced by NDRG3. Collectively, our studies could provide structural and biophysical insights into the molecular characteristics of NDRG3. MDPI 2020-01-06 /pmc/articles/PMC7022630/ /pubmed/31935861 http://dx.doi.org/10.3390/biom10010090 Text en © 2020 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Kyung Rok
Kim, Kyung A.
Park, Joon Sung
Jang, Jun Young
Choi, Yuri
Lee, Hyung Ho
Lee, Dong Chul
Park, Kyung Chan
Yeom, Young Il
Kim, Hyun-Jung
Han, Byung Woo
Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title_full Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title_fullStr Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title_full_unstemmed Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title_short Structural and Biophysical Analyses of Human N-Myc Downstream-Regulated Gene 3 (NDRG3) Protein
title_sort structural and biophysical analyses of human n-myc downstream-regulated gene 3 (ndrg3) protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022630/
https://www.ncbi.nlm.nih.gov/pubmed/31935861
http://dx.doi.org/10.3390/biom10010090
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