Sonya E. Neal, Ph.D.

Affiliations: 
2013 Molecular Biology 0573 University of California, Los Angeles, Los Angeles, CA 
 2013- Biological Sciences University of California, San Diego, La Jolla, CA 
Area:
mitochondrial protein translocation
Website:
https://neallab.biology.ucsd.edu/
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"Sonya Neal"
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SNBCP

Parents

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Carla M. Koehler grad student 2013 UCLA
 (Redox Characterization of Proteins Involved in the Mitochondrial Intermembrane Space Import Pathway.)
Randy Hampton post-doc 2013-2018 UCSD

Children

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Anahita Nejatfard research assistant 2018-2021 UCSD
Saroj Gourkanti grad student UCSD (Cell Biology Tree)
Rachel Kandel grad student 2019- UCSD
Analine Aguayo grad student 2020- UCSD
Ikran A Ibrahim grad student 2021-2023 UCSD
Satarupa Bhaduri post-doc 2019- UCSD
Nicola Scott post-doc 2021- UCSD
BETA: Related publications

Publications

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Kandel R, Jung J, Neal S. (2023) Proteotoxic stress and the ubiquitin proteasome system. Seminars in Cell & Developmental Biology
Kandel R, Jung J, Syau D, et al. (2023) Yeast derlin Dfm1 employs a chaperone-like function to resolve misfolded membrane protein stress. Plos Biology. 21: e3001950
Bhaduri S, Aguayo A, Ohno Y, et al. (2022) An ERAD-independent role for rhomboid pseudoprotease Dfm1 in mediating sphingolipid homeostasis. The Embo Journal. e112275
Bhaduri S, Scott NA, Neal SE. (2022) The Role of the Rhomboid Superfamily in ER Protein Quality Control: From Mechanisms and Functions to Diseases. Cold Spring Harbor Perspectives in Biology
Nejatfard A, Wauer N, Bhaduri S, et al. (2022) Derlin rhomboid pseudoproteases employ substrate engagement and lipid distortion to enable the retrotranslocation of ERAD membrane substrates. Cell Reports. 38: 110578
Nejatfard A, Wauer N, Bhaduri S, et al. (2021) Derlin rhomboid pseudoproteases employ substrate engagement and lipid distortion to enable the retrotranslocation of ERAD membrane substrates. Cell Reports. 37: 109840
Bhaduri S, Neal SE. (2021) Assays for studying normal suppressive ERAD-associated retrotranslocation pathways in yeast. Star Protocols. 2: 100640
Sam PN, Calzada E, Acoba MG, et al. (2021) Impaired phosphatidylethanolamine metabolism activates a reversible stress response that detects and resolves mutant mitochondrial precursors. Iscience. 24: 102196
Flagg MP, Wangeline MA, Holland SR, et al. (2021) Inner-Nuclear-Membrane-Associated Degradation Employs Dfm1-Independent Retrotranslocation and Alleviates Misfolded Transmembrane-Protein Toxicity. Molecular Biology of the Cell. mbcE20110720
Neal S, Syau D, Nejatfard A, et al. (2020) HRD Complex Self-Remodeling Enables a Novel Route of Membrane Protein Retrotranslocation. Iscience. 23: 101493
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