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The cytoplasmic tail of the mechanosensitive channel Pkd2 regulates its internalization and clustering in eisosomes
Mamata Malla1, Debatrayee Sinha1, Pritha Chowdhury1
1Department of Biological Sciences, The University of Toledo, 2801 West Bancroft Street, Toledo, OH 43606, USA.
Abstract:
Polycystins are a family of conserved ion channels, mutations of which lead to one of the most common human genetic disorders, namely, autosomal dominant polycystic kidney disease. Schizosacchromyces pombe possesses an essential polycystin homologue, Pkd2, which directs Ca2+ influx on the cell surface in response to membrane tension, but its structure remains unsolved. Here, we analyzed the structure-function relationship of Pkd2 based on its AlphaFold-predicted structure. Pkd2 consists of three domains, the extracellular lipid-binding domain (LBD), nine-helix transmembrane domain (TMD) and C-terminal cytoplasmic domain (CCD). Our genetic and microscopy data revealed that LBD and TMD are essential for targeting Pkd2 to the plasma membrane from the endoplasmic reticulum. In comparison, CCD ensures the polarized distribution of Pkd2 by promoting its internalization and preventing its clustering in the eisosome, a caveolae-like membrane compartment. The domains of Pkd2 and their functions are conserved in other fission yeast species. We conclude that both extracellular and cytoplasmic domains of Pkd2 are crucial for its intracellular trafficking and function. We propose that mechanosensitive channels can be desensitized through either internalization or clustering in low-tension membrane compartments.
Insights
The Pkd2 protein
Area of Science:
- Molecular Biology
- Cell Biology
- Biophysics
Background:
- Polycystins are vital ion channels implicated in autosomal dominant polycystic kidney disease.
- Schizosacchromyces pombe's Pkd2 homologue is essential for Ca2+ influx but its structure is unknown.
Purpose of the Study:
- To investigate the structure-function relationship of Pkd2 using its AlphaFold-predicted structure.
- To understand the roles of Pkd2's domains in its trafficking and function.
Main Methods:
- Utilized AlphaFold-predicted structure for analysis.
- Employed genetic and microscopy techniques.
- Examined Pkd2 domain conservation across fission yeast species.
Main Results:
- Pkd2 comprises extracellular lipid-binding (LBD), transmembrane (TMD), and cytoplasmic (CCD) domains.
- LBD and TMD are critical for Pkd2 plasma membrane targeting.
- CCD regulates polarized distribution by controlling internalization and preventing eisosome clustering.
Conclusions:
- Both extracellular and cytoplasmic domains of Pkd2 are essential for its intracellular trafficking and function.
- Mechanosensitive channels may be desensitized via internalization or clustering in low-tension compartments.
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