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Defunctionalizing Intracellular Organelles with Genetically-Encoded Molecular Tools Based on Engineered Phospholipase A/Acyltransferases (PLAATs)
Satoshi Watanabe, View ORCID ProfileYuta Nihongaki, View ORCID ProfileKie Itoh, View ORCID ProfileShigeki Watanabe, View ORCID ProfileTakanari Inoue
doi: https://doi.org/10.1101/2021.10.10.463806
Satoshi Watanabe
1Johns Hopkins University School of Medicine, Department of Cell Biology, Baltimore, MD 21205, USA
2Johns Hopkins University School of Medicine, Center for Cell Dynamics, Baltimore, MD 21205, USA
Yuta Nihongaki
1Johns Hopkins University School of Medicine, Department of Cell Biology, Baltimore, MD 21205, USA
2Johns Hopkins University School of Medicine, Center for Cell Dynamics, Baltimore, MD 21205, USA
Kie Itoh
1Johns Hopkins University School of Medicine, Department of Cell Biology, Baltimore, MD 21205, USA
2Johns Hopkins University School of Medicine, Center for Cell Dynamics, Baltimore, MD 21205, USA
3Johns Hopkins University School of Medicine, Department of Neuroscience, Baltimore, MD 21205, USA
Shigeki Watanabe
1Johns Hopkins University School of Medicine, Department of Cell Biology, Baltimore, MD 21205, USA
2Johns Hopkins University School of Medicine, Center for Cell Dynamics, Baltimore, MD 21205, USA
3Johns Hopkins University School of Medicine, Department of Neuroscience, Baltimore, MD 21205, USA
Takanari Inoue
1Johns Hopkins University School of Medicine, Department of Cell Biology, Baltimore, MD 21205, USA
2Johns Hopkins University School of Medicine, Center for Cell Dynamics, Baltimore, MD 21205, USA
Posted October 10, 2021.
Defunctionalizing Intracellular Organelles with Genetically-Encoded Molecular Tools Based on Engineered Phospholipase A/Acyltransferases (PLAATs)
Satoshi Watanabe, Yuta Nihongaki, Kie Itoh, Shigeki Watanabe, Takanari Inoue
bioRxiv 2021.10.10.463806; doi: https://doi.org/10.1101/2021.10.10.463806
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