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Expression, Purification, and Liposome Binding of Budding Yeast SNX-BAR Heterodimers
Published on: December 6, 2019
Tumor suppressor p27(Kip1) undergoes endolysosomal degradation through its interaction with sorting nexin 6
José J Fuster1, José M González, María D Edo
1Laboratory of Vascular Biology, Department of Molecular and Cellular Pathology and Therapy, Instituto de Biomedicina de Valencia, Consejo Superior de Investigaciones Científicas, Valencia, Spain.
Abstract:
A large body of evidence supports the hypothesis that proteasomal degradation of the growth suppressor p27(Kip1) (p27) facilitates mammalian cell cycle progression. However, very few studies have addressed the possibility of proteasome-independent mechanisms of p27 proteolysis. Here we provide evidence for a novel pathway of p27 degradation via the lysosome that is mediated by its interaction with the endosomal protein sorting nexin 6 (SNX6), a member of the sorting nexin family of vesicular trafficking regulators. p27 and SNX6 interact in vitro and in vivo in mammalian cells, partially colocalize in endosomes, and are present in purified endosomal fractions. Gain- and loss-of-function studies revealed that SNX6 induces endosomal accumulation of p27. Moreover, p27 is detected in lysosomes and inhibition of lysosome-dependent proteolysis impairs serum-mediated down-regulation of p27 in a SNX6-dependent manner. To validate the localization of p27 in these organelles, we analyzed several cell lines using two different anti-p27 antibodies, several organelle-specific markers [e.g., early endosome antigen 1, lysosomal-associated membrane protein (LAMP) 1, LAMP2, and LysoTracker], and overexpression of fluorescent p27 and SNX6. Remarkably, silencing of SNX6 attenuates p27 down-regulation in the G(1) phase of the mitotic cell cycle and delays cell cycle progression. We therefore conclude that, in addition to the proteasome-dependent pathway, SNX6-mediated endolysosomal degradation of p27 also contributes to cell cycle progression in mammalian cells.
Insights
This study reveals a new lysosomal pathway for degrading the p27 protein, mediated by sorting nexin 6 (SNX6). This SNX6-dependent degradation of p27 is crucial for cell cycle progression in mammalian cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Proteasomal degradation of p27 (Kip1) is a known driver of mammalian cell cycle progression.
- Proteasome-independent mechanisms for p27 proteolysis remain largely unexplored.
Purpose of the Study:
- To investigate novel pathways for p27 degradation beyond the proteasome.
- To elucidate the role of sorting nexin 6 (SNX6) in p27 regulation and cell cycle control.
Main Methods:
- In vitro and in vivo interaction studies of p27 and SNX6.
- Cellular localization studies using organelle markers and fluorescent proteins.
- Gain- and loss-of-function experiments involving SNX6 manipulation.
- Analysis of p27 down-regulation and cell cycle progression.
Main Results:
- p27 interacts with SNX6 and partially co-localizes in endosomes.
- SNX6 promotes endosomal accumulation and lysosomal degradation of p27.
- SNX6 silencing impairs p27 down-regulation and delays cell cycle progression.
Conclusions:
- A novel SNX6-mediated endolysosomal degradation pathway for p27 exists.
- This pathway contributes to cell cycle progression in mammalian cells, complementing proteasomal degradation.
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