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Systematically defining selective autophagy receptor-specific cargo using  autophagosome content profiling - ScienceDirect
Systematically defining selective autophagy receptor-specific cargo using autophagosome content profiling - ScienceDirect

Systematically defining selective autophagy receptor-specific cargo using  autophagosome content profiling - ScienceDirect
Systematically defining selective autophagy receptor-specific cargo using autophagosome content profiling - ScienceDirect

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

PEX5 translocation into and out of peroxisomes drives matrix protein import  - ScienceDirect
PEX5 translocation into and out of peroxisomes drives matrix protein import - ScienceDirect

PEX5 translocation into and out of peroxisomes drives matrix protein import
PEX5 translocation into and out of peroxisomes drives matrix protein import

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

Genome and Disease - JOHN J. HADDAD, Ph.D.
Genome and Disease - JOHN J. HADDAD, Ph.D.

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

Sapote Information and Facts
Sapote Information and Facts

Systemic regulation of bilirubin homeostasis: Potential benefits of  hyperbilirubinemia - Fujiwara - 2018 - Hepatology - Wiley Online Library
Systemic regulation of bilirubin homeostasis: Potential benefits of hyperbilirubinemia - Fujiwara - 2018 - Hepatology - Wiley Online Library

Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv
Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

Sapote Information and Facts
Sapote Information and Facts

Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv
Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv

Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv
Mechanism of PEX5-mediated protein import into peroxisomes | bioRxiv

PEX5 translocation into and out of peroxisomes drives matrix protein import
PEX5 translocation into and out of peroxisomes drives matrix protein import

Quantitative proteomics reveals the selectivity of ubiquitin-binding  autophagy receptors in the turnover of damaged lysosomes by lysophagy |  bioRxiv
Quantitative proteomics reveals the selectivity of ubiquitin-binding autophagy receptors in the turnover of damaged lysosomes by lysophagy | bioRxiv

Quantitative proteomics reveals the selectivity of ubiquitin-binding  autophagy receptors in the turnover of damaged lysosomes by lysophagy |  eLife
Quantitative proteomics reveals the selectivity of ubiquitin-binding autophagy receptors in the turnover of damaged lysosomes by lysophagy | eLife

Protein clearance strategies for disease intervention | SpringerLink
Protein clearance strategies for disease intervention | SpringerLink

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

PEX5 translocation into and out of peroxisomes drives matrix protein import
PEX5 translocation into and out of peroxisomes drives matrix protein import

PEX5 translocation into and out of peroxisomes drives matrix protein import
PEX5 translocation into and out of peroxisomes drives matrix protein import

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

PEX5 translocation into and out of peroxisomes drives matrix protein import
PEX5 translocation into and out of peroxisomes drives matrix protein import

Mamey Sapote Information and Facts
Mamey Sapote Information and Facts

Molecular Physiology and Pathophysiology of Bilirubin Handling by the  Blood, Liver, Intestine, and Brain in the Newborn | Physiological Reviews
Molecular Physiology and Pathophysiology of Bilirubin Handling by the Blood, Liver, Intestine, and Brain in the Newborn | Physiological Reviews

Sapote Information and Facts
Sapote Information and Facts

Quantitative proteomics reveals the selectivity of ubiquitin-binding  autophagy receptors in the turnover of damaged lysosomes by lysophagy |  eLife
Quantitative proteomics reveals the selectivity of ubiquitin-binding autophagy receptors in the turnover of damaged lysosomes by lysophagy | eLife