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Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells

The Acyl-CoA-binding domain-containing protein (ACBD3) plays multiple roles across the cell. Although generally associated with the Golgi apparatus, it operates also in mitochondria. In steroidogenic cells, ACBD3 is an important part of a multiprotein complex transporting cholesterol into mitochondr...

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Autores principales: Daňhelovská, Tereza, Zdražilová, Lucie, Štufková, Hana, Vanišová, Marie, Volfová, Nikol, Křížová, Jana, Kuda, Ondřej, Sládková, Jana, Tesařová, Markéta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8303370/
https://www.ncbi.nlm.nih.gov/pubmed/34298889
http://dx.doi.org/10.3390/ijms22147270
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author Daňhelovská, Tereza
Zdražilová, Lucie
Štufková, Hana
Vanišová, Marie
Volfová, Nikol
Křížová, Jana
Kuda, Ondřej
Sládková, Jana
Tesařová, Markéta
author_facet Daňhelovská, Tereza
Zdražilová, Lucie
Štufková, Hana
Vanišová, Marie
Volfová, Nikol
Křížová, Jana
Kuda, Ondřej
Sládková, Jana
Tesařová, Markéta
author_sort Daňhelovská, Tereza
collection PubMed
description The Acyl-CoA-binding domain-containing protein (ACBD3) plays multiple roles across the cell. Although generally associated with the Golgi apparatus, it operates also in mitochondria. In steroidogenic cells, ACBD3 is an important part of a multiprotein complex transporting cholesterol into mitochondria. Balance in mitochondrial cholesterol is essential for proper mitochondrial protein biosynthesis, among others. We generated ACBD3 knock-out (ACBD3-KO) HEK293 and HeLa cells and characterized the impact of protein absence on mitochondria, Golgi, and lipid profile. In ACBD3-KO cells, cholesterol level and mitochondrial structure and functions are not altered, demonstrating that an alternative pathway of cholesterol transport into mitochondria exists. However, ACBD3-KO cells exhibit enlarged Golgi area with absence of stacks and ribbon-like formation, confirming the importance of ACBD3 in Golgi stacking. The glycosylation of the LAMP2 glycoprotein was not affected by the altered Golgi structure. Moreover, decreased sphingomyelins together with normal ceramides and sphingomyelin synthase activity reveal the importance of ACBD3 in ceramide transport from ER to Golgi.
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spelling pubmed-83033702021-07-25 Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells Daňhelovská, Tereza Zdražilová, Lucie Štufková, Hana Vanišová, Marie Volfová, Nikol Křížová, Jana Kuda, Ondřej Sládková, Jana Tesařová, Markéta Int J Mol Sci Article The Acyl-CoA-binding domain-containing protein (ACBD3) plays multiple roles across the cell. Although generally associated with the Golgi apparatus, it operates also in mitochondria. In steroidogenic cells, ACBD3 is an important part of a multiprotein complex transporting cholesterol into mitochondria. Balance in mitochondrial cholesterol is essential for proper mitochondrial protein biosynthesis, among others. We generated ACBD3 knock-out (ACBD3-KO) HEK293 and HeLa cells and characterized the impact of protein absence on mitochondria, Golgi, and lipid profile. In ACBD3-KO cells, cholesterol level and mitochondrial structure and functions are not altered, demonstrating that an alternative pathway of cholesterol transport into mitochondria exists. However, ACBD3-KO cells exhibit enlarged Golgi area with absence of stacks and ribbon-like formation, confirming the importance of ACBD3 in Golgi stacking. The glycosylation of the LAMP2 glycoprotein was not affected by the altered Golgi structure. Moreover, decreased sphingomyelins together with normal ceramides and sphingomyelin synthase activity reveal the importance of ACBD3 in ceramide transport from ER to Golgi. MDPI 2021-07-06 /pmc/articles/PMC8303370/ /pubmed/34298889 http://dx.doi.org/10.3390/ijms22147270 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Daňhelovská, Tereza
Zdražilová, Lucie
Štufková, Hana
Vanišová, Marie
Volfová, Nikol
Křížová, Jana
Kuda, Ondřej
Sládková, Jana
Tesařová, Markéta
Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title_full Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title_fullStr Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title_full_unstemmed Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title_short Knock-Out of ACBD3 Leads to Dispersed Golgi Structure, but Unaffected Mitochondrial Functions in HEK293 and HeLa Cells
title_sort knock-out of acbd3 leads to dispersed golgi structure, but unaffected mitochondrial functions in hek293 and hela cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8303370/
https://www.ncbi.nlm.nih.gov/pubmed/34298889
http://dx.doi.org/10.3390/ijms22147270
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