AI Article Synopsis

  • Many secretory proteins require cleavage for activation, with proprotein convertases (PCs) playing a key role in this process, specifically within cellular compartments like the Golgi network and endosomes.
  • PC7 is identified as a unique type-I transmembrane protein that sheds the human transferrin receptor 1 (hTfR1) into a soluble form; however, deleting its cytosolic tail (CT) impairs this activity.
  • Researchers pinpointed an essential EEL motif in the CT of PC7, discovering that specific residues enhance PC7’s localization and activity in endosomes, and identified adaptor protein 2 (AP-2) as a regulator involved in this process.

Article Abstract

Many secretory proteins are activated by cleavage at specific sites. The proprotein convertases (PCs) form a family of nine secretory subtilisin-like serine proteases, seven of which cleave at specific basic residues within the -Golgi network, granules, or at the cell surface/endosomes. The seventh member, PC7, is a type-I transmembrane (TM) protein with a 97-residue-long cytosolic tail (CT). PC7 sheds human transferrin receptor 1 (hTfR1) into soluble shTfR1 in endosomes. To better understand the physiological roles of PC7, here we focused on the relationship between the CT-regulated trafficking of PC7 and its ability to shed hTfR1. Deletion of the TMCT resulted in soluble PC7 and loss of its hTfR1 shedding activity. Extensive CT deletions and mutagenesis analyses helped us zoom in on three residues in the CT, namely Glu-719, Glu-721, and Leu-725, that are part of a novel motif, EEL, critical for PC7 activity on hTfR1. NMR studies of two 14-mer peptides mimicking this region of the CT and its Ala variants revealed that the three exposed residues are on the same side of the molecule. This led to the identification of adaptor protein 2 (AP-2) as a protein that recognizes the EEL motif, thus representing a potentially new regulator of PC7 trafficking and cleavage activity. Immunocytochemistry of the subcellular localization of PC7 and its Ala variants of Leu-725 and Glu-719 and Glu-721 revealed that Leu-725 enhances PC7 localization to early endosomes and that, together with Glu-719 and Glu-721, it increases the endosomal activity of PC7 on hTfR1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7029121PMC
http://dx.doi.org/10.1074/jbc.RA119.011775DOI Listing

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