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Robust Sequence Determinants of α-Synuclein Toxicity in Yeast Implicate Membrane Binding

View ORCID ProfileRobert W. Newberry, Taylor Arhar, Jean Costello, George C. Hartoularos, Alison M. Maxwell, Zun Zar Chi Naing, Maureen Pittman, Nishith R. Reddy, Daniel M. C. Schwarz, Douglas R. Wassarman, Taia S. Wu, Daniel Barrero, Christa Caggiano, Adam Catching, Taylor B. Cavazos, Laurel S. Estes, Bryan Faust, Elissa A. Fink, Miriam A. Goldman, Yessica K. Gomez, M. Grace Gordon, Laura M. Gunsalus, Nick Hoppe, Maru Jaime-Garza, Matthew C. Johnson, Matthew G. Jones, Andrew F. Kung, Kyle E. Lopez, Jared Lumpe, Calla Martyn, Elizabeth E. McCarthy, Lakshmi E. Miller-Vedam, Erik J. Navarro, Aji Palar, Jenna Pellegrino, Wren Saylor, Christina A. Stephens, Jack Strickland, Hayarpi Torosyan, Stephanie A. Wankowicz, Daniel R. Wong, Garrett Wong, Sy Redding, Eric D. Chow, View ORCID ProfileWilliam F. DeGrado, View ORCID ProfileMartin Kampmann
doi: https://doi.org/10.1101/2020.05.01.072884
Robert W. Newberry
1Department of Pharmaceutical Chemistry, University of California, San Francisco
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Taylor Arhar
2Chemistry and Chemical Biology Graduate Program, University of California, San Francisco
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Jean Costello
3Integrative Program in Quantitative Biology, University of California, San Francisco
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George C. Hartoularos
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Alison M. Maxwell
2Chemistry and Chemical Biology Graduate Program, University of California, San Francisco
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Zun Zar Chi Naing
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Maureen Pittman
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Nishith R. Reddy
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Daniel M. C. Schwarz
2Chemistry and Chemical Biology Graduate Program, University of California, San Francisco
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Douglas R. Wassarman
2Chemistry and Chemical Biology Graduate Program, University of California, San Francisco
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Taia S. Wu
2Chemistry and Chemical Biology Graduate Program, University of California, San Francisco
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Daniel Barrero
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Christa Caggiano
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Adam Catching
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Taylor B. Cavazos
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Laurel S. Estes
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Bryan Faust
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Elissa A. Fink
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Miriam A. Goldman
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Yessica K. Gomez
3Integrative Program in Quantitative Biology, University of California, San Francisco
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M. Grace Gordon
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Laura M. Gunsalus
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Nick Hoppe
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Maru Jaime-Garza
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Matthew C. Johnson
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Matthew G. Jones
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Andrew F. Kung
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Kyle E. Lopez
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Jared Lumpe
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Calla Martyn
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Elizabeth E. McCarthy
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Lakshmi E. Miller-Vedam
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Erik J. Navarro
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Aji Palar
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Jenna Pellegrino
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Wren Saylor
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Christina A. Stephens
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Jack Strickland
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Hayarpi Torosyan
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Stephanie A. Wankowicz
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Daniel R. Wong
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Garrett Wong
3Integrative Program in Quantitative Biology, University of California, San Francisco
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Sy Redding
4Department of Biochemistry & Biophysics, University of California, San Francisco
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Eric D. Chow
4Department of Biochemistry & Biophysics, University of California, San Francisco
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William F. DeGrado
1Department of Pharmaceutical Chemistry, University of California, San Francisco
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Martin Kampmann
4Department of Biochemistry & Biophysics, University of California, San Francisco
5Institute for Neurodegenerative Disease, University of California, San Francisco
6Chan Zuckerberg Biohub, San Francisco, CA 94158, USA
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  • For correspondence: martin.kampmann@ucsf.edu
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ABSTRACT

Protein conformations are shaped by cellular environments, but how environmental changes alter the conformational landscapes of specific proteins in vivo remains largely uncharacterized, in part due to the challenge of probing protein structures in living cells. Here, we use deep mutational scanning to investigate how a toxic conformation of α-synuclein, a dynamic protein linked to Parkinson’s disease, responds to perturbations of cellular proteostasis. In the context of a course for graduate students in the UCSF Integrative Program in Quantitative Biology, we screened a comprehensive library of α-synuclein missense mutants in yeast cells treated with a variety of small molecules that perturb cellular processes linked to α-synuclein biology and pathobiology. We found that the conformation of α-synuclein previously shown to drive yeast toxicity—an extended, membrane-bound helix—is largely unaffected by these chemical perturbations, underscoring the importance of this conformational state as a driver of cellular toxicity. On the other hand, the chemical perturbations have a significant effect on the ability of mutations to suppress α-synuclein toxicity. Moreover, we find that sequence determinants of α-synuclein toxicity are well described by a simple structural model of the membrane-bound helix. This model predicts that α-synuclein penetrates the membrane to constant depth across its length but that membrane affinity decreases toward the C terminus, which is consistent with orthogonal biophysical measurements. Finally, we discuss how parallelized chemical genetics experiments can provide a robust framework for inquiry-based graduate coursework.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • ↵* robert.newberry{at}ucsf.edu; bill.degrado{at}ucsf.edu; martin.kampmann{at}ucsf.edu

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Robust Sequence Determinants of α-Synuclein Toxicity in Yeast Implicate Membrane Binding
Robert W. Newberry, Taylor Arhar, Jean Costello, George C. Hartoularos, Alison M. Maxwell, Zun Zar Chi Naing, Maureen Pittman, Nishith R. Reddy, Daniel M. C. Schwarz, Douglas R. Wassarman, Taia S. Wu, Daniel Barrero, Christa Caggiano, Adam Catching, Taylor B. Cavazos, Laurel S. Estes, Bryan Faust, Elissa A. Fink, Miriam A. Goldman, Yessica K. Gomez, M. Grace Gordon, Laura M. Gunsalus, Nick Hoppe, Maru Jaime-Garza, Matthew C. Johnson, Matthew G. Jones, Andrew F. Kung, Kyle E. Lopez, Jared Lumpe, Calla Martyn, Elizabeth E. McCarthy, Lakshmi E. Miller-Vedam, Erik J. Navarro, Aji Palar, Jenna Pellegrino, Wren Saylor, Christina A. Stephens, Jack Strickland, Hayarpi Torosyan, Stephanie A. Wankowicz, Daniel R. Wong, Garrett Wong, Sy Redding, Eric D. Chow, William F. DeGrado, Martin Kampmann
bioRxiv 2020.05.01.072884; doi: https://doi.org/10.1101/2020.05.01.072884
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Robust Sequence Determinants of α-Synuclein Toxicity in Yeast Implicate Membrane Binding
Robert W. Newberry, Taylor Arhar, Jean Costello, George C. Hartoularos, Alison M. Maxwell, Zun Zar Chi Naing, Maureen Pittman, Nishith R. Reddy, Daniel M. C. Schwarz, Douglas R. Wassarman, Taia S. Wu, Daniel Barrero, Christa Caggiano, Adam Catching, Taylor B. Cavazos, Laurel S. Estes, Bryan Faust, Elissa A. Fink, Miriam A. Goldman, Yessica K. Gomez, M. Grace Gordon, Laura M. Gunsalus, Nick Hoppe, Maru Jaime-Garza, Matthew C. Johnson, Matthew G. Jones, Andrew F. Kung, Kyle E. Lopez, Jared Lumpe, Calla Martyn, Elizabeth E. McCarthy, Lakshmi E. Miller-Vedam, Erik J. Navarro, Aji Palar, Jenna Pellegrino, Wren Saylor, Christina A. Stephens, Jack Strickland, Hayarpi Torosyan, Stephanie A. Wankowicz, Daniel R. Wong, Garrett Wong, Sy Redding, Eric D. Chow, William F. DeGrado, Martin Kampmann
bioRxiv 2020.05.01.072884; doi: https://doi.org/10.1101/2020.05.01.072884

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