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Biogenesis of fibrils requires C-mannosylation of PMEL
Ryota Kawahara1, Tomoko Usami1, Satoko Arakawa2,3
1Department of Applied Chemistry, Faculty of Science and Technology, Keio University, Yokohama, Japan.
Abstract:
Premelanosome protein (PMEL), a melanocyte-specific glycoprotein, has an essential role in melanosome maturation, assembling amyloid fibrils for melanin deposition. PMEL undergoes several post-translational modifications, including N- and O-glycosylations, which are associated with proper melanosome development. C-mannosylation is a rare type of protein glycosylation at a tryptophan residue that might regulate the secretion and localization of proteins. PMEL has one putative C-mannosylation site in its core amyloid fragment (CAF); however, there is no report focusing on C-mannosylation of PMEL. To investigate this, we expressed recombinant PMEL in SK-MEL-28 human melanoma cells and purified the protein. Mass spectrometry analyses demonstrated that human PMEL is C-mannosylated at multiple tryptophan residues in its CAF and N-terminal fragment (NTF). In addition to the W153 or W156 residue (CAF), which lies in the consensus sequence for C-mannosylation, the W104 residue (NTF) was C-mannosylated without the consensus sequence. To determine the effects of the modifications, we deleted the PMEL gene by using CRISPR/Cas9 technology and re-expressed wild-type or C-mannosylation-defective mutants of PMEL, in which the C-mannosylated tryptophan was replaced with a phenylalanine residue (WF mutation), in SK-MEL-28 cells. Importantly, fibril-containing melanosomes were significantly decreased in W104F mutant PMEL-re-expressing cells compared with wild-type PMEL, observed using transmission electron microscopy. Furthermore, western blot and immunofluorescence analysis suggested that the W104F mutation may cause mild endoplasmic reticulumretention, possibly associated with early misfolding, and lysosomal misaggregation, thus reducing functional fibril formation. Our results demonstrate that C-mannosylation of PMEL is required for proper melanosome development by regulating PMEL-derived fibril formation.
Insights
C-mannosylation of premelanosome protein (PMEL) is crucial for melanosome development. Modifying PMEL
Area of Science:
- Biochemistry
- Cell Biology
- Glycoscience
Background:
- Premelanosome protein (PMEL) is vital for melanosome maturation and melanin deposition.
- Post-translational modifications, including glycosylations, regulate PMEL function.
- C-mannosylation is a rare glycosylation potentially affecting protein secretion and localization.
Purpose of the Study:
- To investigate C-mannosylation of PMEL.
- To determine the functional impact of PMEL C-mannosylation on melanosome development.
Main Methods:
- Recombinant PMEL expression and purification in human melanoma cells.
- Mass spectrometry to identify C-mannosylation sites.
- CRISPR/Cas9 gene editing to create PMEL mutants.
- Transmission electron microscopy, western blot, and immunofluorescence analysis.
Main Results:
- Human PMEL is C-mannosylated at multiple tryptophan residues in its core amyloid fragment and N-terminal fragment.
- Mutation of C-mannosylated tryptophan at W104 significantly decreased fibril-containing melanosomes.
- W104F mutation led to ER retention, misfolding, and reduced functional fibril formation.
Conclusions:
- C-mannosylation of PMEL is essential for proper melanosome development.
- PMEL C-mannosylation regulates the formation of PMEL-derived amyloid fibrils.
- Specific C-mannosylation sites, like W104, are critical for PMEL's role in melanogenesis.
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