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Convergent use of phosphatidic acid for hepatitis C virus and SARS-CoV-2 replication organelle formation

Authors :
Britta Bruegger
Carolin Zitzmann
Christian Luechtenborg
Ji-Young Lee
Mirko Cortese
Cong Si Tran
Uta Haselmann
Keisuke Tabata
Juergen Beneke
Vibhu Prasad
Volker Lohmann
Holger Erfle
Berati Cerikan
David L. Paul
Philip V'kovski
Ralf Bartenschlager
Woan-Ing Twu
Volker Thiel
Katrin Hoermann
André C. Mueller
Giulio Superti-Furga
Minh-Tu Pham
Lars Kaderali
Christopher J. Neufeldt
Tabata, K.
Prasad, V.
Paul, D.
Lee, J. -Y.
Pham, M. -T.
Twu, W. -I.
Neufeldt, C. J.
Cortese, M.
Cerikan, B.
Stahl, Y.
Joecks, S.
Tran, C. S.
Luchtenborg, C.
V'Kovski, P.
Hormann, K.
Muller, A. C.
Zitzmann, C.
Haselmann, U.
Beneke, J.
Kaderali, L.
Erfle, H.
Thiel, V.
Lohmann, V.
Superti-Furga, G.
Brugger, B.
Bartenschlager, R.
Source :
Tabata, Keisuke; Prasad, Vibhu; Paul, David; Lee, Ji-Young; Pham, Minh-Tu; Twu, Woan-Ing; Neufeldt, Christopher J; Cortese, Mirko; Cerikan, Berati; Stahl, Yannick; Joecks, Sebastian; Tran, Cong Si; Lüchtenborg, Christian; V'kovski, Philip; Hörmann, Katrin; Müller, André C; Zitzmann, Carolin; Haselmann, Uta; Beneke, Jürgen; Kaderali, Lars; ... (2021). Convergent use of phosphatidic acid for hepatitis C virus and SARS-CoV-2 replication organelle formation. Nature Communications, 12(1), p. 7276. Springer Nature 10.1038/s41467-021-27511-1 , Nature Communications, Vol 12, Iss 1, Pp 1-15 (2021), Nature Communications
Publication Year :
2021
Publisher :
Springer Nature, 2021.

Abstract

Double membrane vesicles (DMVs) serve as replication organelles of plus-strand RNA viruses such as hepatitis C virus (HCV) and SARS-CoV-2. Viral DMVs are morphologically analogous to DMVs formed during autophagy, but lipids driving their biogenesis are largely unknown. Here we show that production of the lipid phosphatidic acid (PA) by acylglycerolphosphate acyltransferase (AGPAT) 1 and 2 in the ER is important for DMV biogenesis in viral replication and autophagy. Using DMVs in HCV-replicating cells as model, we found that AGPATs are recruited to and critically contribute to HCV and SARS-CoV-2 replication and proper DMV formation. An intracellular PA sensor accumulated at viral DMV formation sites, consistent with elevated levels of PA in fractions of purified DMVs analyzed by lipidomics. Apart from AGPATs, PA is generated by alternative pathways and their pharmacological inhibition also impaired HCV and SARS-CoV-2 replication as well as formation of autophagosome-like DMVs. These data identify PA as host cell lipid involved in proper replication organelle formation by HCV and SARS-CoV-2, two phylogenetically disparate viruses causing very different diseases, i.e. chronic liver disease and COVID-19, respectively. Host-targeting therapy aiming at PA synthesis pathways might be suitable to attenuate replication of these viruses.<br />Double membrane vesicles (DMV) are used as replication organelles by several RNA viruses. Applying proteomics and lipidomics, Tabata and Prasad et al. find that two cellular acyltransferases (AGPAT1/2), responsible for synthesis of phosphatidic acid, play a role in the DMV-biogenesis of HCV and SARS-CoV-2, highlighting a common biogenesis mechanism for evolutionary distant positive-strand RNA viruses.

Details

Database :
OpenAIRE
Journal :
Tabata, Keisuke; Prasad, Vibhu; Paul, David; Lee, Ji-Young; Pham, Minh-Tu; Twu, Woan-Ing; Neufeldt, Christopher J; Cortese, Mirko; Cerikan, Berati; Stahl, Yannick; Joecks, Sebastian; Tran, Cong Si; L&#252;chtenborg, Christian; V&#39;kovski, Philip; H&#246;rmann, Katrin; M&#252;ller, Andr&#233; C; Zitzmann, Carolin; Haselmann, Uta; Beneke, J&#252;rgen; Kaderali, Lars; ... (2021). Convergent use of phosphatidic acid for hepatitis C virus and SARS-CoV-2 replication organelle formation. Nature Communications, 12(1), p. 7276. Springer Nature 10.1038/s41467-021-27511-1 <http://dx.doi.org/10.1038/s41467-021-27511-1>, Nature Communications, Vol 12, Iss 1, Pp 1-15 (2021), Nature Communications
Accession number :
edsair.doi.dedup.....98e0eb24bb13730b45a04c281f834aaf
Full Text :
https://doi.org/10.48350/165639