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Spf1 and Ste24: quality controllers of transmembrane protein topology in the eukaryotic cell. | LitMetric

Spf1 and Ste24: quality controllers of transmembrane protein topology in the eukaryotic cell.

Front Cell Dev Biol

i3S-Instituto de Investigação e Inovação em Saude, Universidade do Porto, Porto, Portugal.

Published: August 2023

DNA replication, transcription, and translation in eukaryotic cells occur with decreasing but still high fidelity. In contrast, for the estimated 33% of the human proteome that is inserted as transmembrane (TM) proteins, insertion with a non-functional inverted topology is frequent. Correct topology is essential for function and trafficking to appropriate cellular compartments and is controlled principally by responses to charged residues within 15 residues of the inserted TM domain (TMD); the flank with the higher positive charge remains in the cytosol (inside), following the positive inside rule (PIR). Yeast () mutants that increase insertion contrary to the PIR were selected. Mutants with strong phenotypes were found only in and (human cell orthologs are and ) with, at the time, no known relevant functions. Spf1/Atp13A1 is now known to dislocate to the cytosol TM proteins inserted contrary to the PIR, allowing energy-conserving reinsertion. We hypothesize that Spf1 and Ste24 both recognize the short, positively charged ER luminal peptides of TM proteins inserted contrary to the PIR, accepting these peptides into their large membrane-spanning, water-filled cavities through interaction with their many interior surface negative charges. While entry was demonstrated for Spf1, no published evidence directly demonstrates substrate entry to the Ste24 cavity, internal access to its zinc metalloprotease (ZMP) site, or active withdrawal of fragments, which may be essential for function. Spf1 and Ste24 comprise a PIR quality control system that is conserved in all eukaryotes and presumably evolved in prokaryotic progenitors as they gained differentiated membrane functions. About 75% of the PIR is imposed by this quality control system, which joins the UPR, ERAD, and autophagy (ER-phagy) in coordinated, overlapping quality control of ER protein function.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10456885PMC
http://dx.doi.org/10.3389/fcell.2023.1220441DOI Listing

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