Maya Schuldiner

Affiliations: 
Molecular Genetics Weizmann Institute of Science, Rehovot, Israel 
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"Maya Schuldiner"

Parents

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Nissim Benvenisty grad student Hebrew University (DevTree)
Michael Thomas McManus grad student UCSF (Chemistry Tree)
Jonathan S. Weissman post-doc UCSF (Chemistry Tree)
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Publications

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Bittner E, Stehlik T, Lam J, et al. (2024) Proteins that carry dual targeting signals can act as tethers between peroxisomes and partner organelles. Plos Biology. 22: e3002508
Cohen N, Aviram N, Schuldiner M. (2023) A systematic proximity ligation approach to studying protein-substrate specificity identifies the substrate spectrum of the Ssh1 translocon. The Embo Journal. e113385
Jansen RLM, van den Noort M, Krikken AM, et al. (2023) Novel targeting assay uncovers targeting information within peroxisomal ABC transporter Pxa1. Biochimica Et Biophysica Acta. Molecular Cell Research. 1870: 119471
Fenech EJ, Cohen N, Kupervaser M, et al. (2023) A toolbox for systematic discovery of stable and transient protein interactors in baker's yeast. Molecular Systems Biology. e11084
Barbieri G, Simon J, Lupusella CR, et al. (2023) Sec61 channel subunit Sbh1/Sec61β promotes ER translocation of proteins with suboptimal targeting sequences and is fine-tuned by phosphorylation. The Journal of Biological Chemistry. 102895
Yifrach E, Rudowitz M, Cruz-Zaragoza LD, et al. (2022) Determining the targeting specificity of the selective peroxisomal targeting factor Pex9. Biological Chemistry
Yifrach E, Holbrook-Smith D, Bürgi J, et al. (2022) Systematic multi-level analysis of an organelle proteome reveals new peroxisomal functions. Molecular Systems Biology. 18: e11186
Fischer S, Bürgi J, Gabay-Maskit S, et al. (2022) Phosphorylation of the receptor protein Pex5p modulates import of proteins into peroxisomes. Biological Chemistry
David Y, Castro IG, Yifrach E, et al. (2022) Pls1 Is a Peroxisomal Matrix Protein with a Role in Regulating Lysine Biosynthesis. Cells. 11
Cohen N, Kahana A, Schuldiner M. (2022) A Similarity-Based Method for Predicting Enzymatic Functions in Yeast Uncovers a New AMP Hydrolase. Journal of Molecular Biology. 434: 167478
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