Negatively charged amino acids in the stalk region of membrane proteins reduce ectodomain shedding. 2020

Ryo Iwagishi, and Rika Tanaka, and Munenosuke Seto, and Tomoyo Takagi, and Naoko Norioka, and Tomoe Ueyama, and Teruhisa Kawamura, and Junichi Takagi, and Yoshihiro Ogawa, and Kyoko Shirakabe
Department of Biomedical Sciences, College of Life Sciences, Ritsumeikan University, Kusatsu, Japan.

Ectodomain shedding is a post-translational modification mechanism by which the entire extracellular domain of membrane proteins is liberated through juxtamembrane processing. Because shedding rapidly and irreversibly alters the characteristics of cells, this process is properly regulated. However, the molecular mechanisms governing the propensity of membrane proteins to shedding are largely unknown. Here, we present evidence that negatively charged amino acids within the stalk region, an unstructured juxtamembrane region at which shedding occurs, contribute to shedding susceptibility. We show that two activated leukocyte cell adhesion molecule (ALCAM) protein variants produced by alternative splicing have different susceptibilities to ADAM metallopeptidase domain 17 (ADAM17)-mediated shedding. Of note, the inclusion of a stalk region encoded by a 39-bp-long alternative exon conferred shedding resistance. We found that this alternative exon encodes a large proportion of negatively charged amino acids, which we demonstrate are indispensable for conferring the shedding resistance. We also show that the introduction of negatively charged amino acids into the stalk region of shedding-susceptible ALCAM variant protein attenuates its shedding. Furthermore, we observed that negatively charged amino acids residing in the stalk region of Erb-B2 receptor tyrosine kinase 4 (ERBB4) are indispensable for its shedding resistance. Collectively, our results indicate that negatively charged amino acids within the stalk region interfere with the shedding of multiple membrane proteins. We conclude that the composition of the stalk region determines the shedding susceptibility of membrane proteins.

UI MeSH Term Description Entries
D002462 Cell Membrane The lipid- and protein-containing, selectively permeable membrane that surrounds the cytoplasm in prokaryotic and eukaryotic cells. Plasma Membrane,Cytoplasmic Membrane,Cell Membranes,Cytoplasmic Membranes,Membrane, Cell,Membrane, Cytoplasmic,Membrane, Plasma,Membranes, Cell,Membranes, Cytoplasmic,Membranes, Plasma,Plasma Membranes
D000067996 RAW 264.7 Cells A transformed macrophage cell line isolated from ASCITES of mice infected with ABELSON MURINE LEUKEMIA VIRUS. RAW 264.7 Cell Line,264.7 Cell, RAW,264.7 Cells, RAW,Cell, RAW 264.7,Cells, RAW 264.7,RAW 264.7 Cell
D000072198 ADAM17 Protein A disintegrin and metalloproteinase domain-containing protein that cleaves the membrane-bound precursor of TUMOR NECROSIS FACTOR-ALPHA to its mature form. It cleaves several other CELL SURFACE PROTEINS, including INTERLEUKIN-1 RECEPTOR TYPE II; TRANSFORMING GROWTH FACTOR ALPHA; L-SELECTIN; MUCIN-1; and AMYLOID BETA-PROTEIN PRECURSOR. It can also function as an activator of the Notch signaling pathway by mediating the cleavage of NOTCH RECEPTORS. ADAM-17,ADAM-17 Protein,CD156b Antigen,Disintegrin and Metalloproteinase Domain-Containing Protein 17,TACA (Enzyme),TACE (Enzyme),TNF-alpha Convertase,TNF-alpha Converting Enzyme,Tumor Necrosis Factor Alpha Convertase,Tumor Necrosis Factor-alpha Convertase,Tumor Necrosis Factor-alpha Converting Enzyme,ADAM 17 Protein,Antigen, CD156b,Convertase, TNF-alpha,Disintegrin and Metalloproteinase Domain Containing Protein 17,TNF alpha Convertase,TNF alpha Converting Enzyme,Tumor Necrosis Factor alpha Converting Enzyme
D000072417 Protein Domains Discrete protein structural units that may fold independently of the rest of the protein and have their own functions. Peptide Domain,Protein Domain,Domain, Peptide,Domain, Protein,Domains, Peptide,Domains, Protein,Peptide Domains
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D020410 Activated-Leukocyte Cell Adhesion Molecule Cell adhesion molecule expressed on activated leukocytes, fibroblasts, and neurons. It is a ligand for CD6. ALCAM-CD6 interactions may play a role in the binding of T and B cells to activated leukocytes. ALCAM,Antigens, CD166,CD166 Antigens,CD6 Ligand,KG-CAM,Neurolin,Activated Leukocyte Cell Adhesion Molecule,Alcam protein, Zebrafish,Zebrafish Alcam protein
D066247 Receptor, ErbB-4 A cell surface protein-tyrosine kinase receptor that has specificity for EPIREGULIN; BETACELLIN; NEUREGULINS; and HEPARIN-BINDING EGF-LIKE GROWTH-FACTOR. ErbB-4 Receptor,HER-4 Proto-oncogene Protein,Proto-oncogene Protein HER-4,Receptor Protein-tyrosine Kinase ErbB-4,Receptor Tyrosine-protein Kinase ErbB-4,c-ErbB-4 Protein,v-erb-a Erythroblastic Leukemia Viral Oncogene Homolog 4 (avian) Protein,ErbB 4 Receptor,HER 4 Proto oncogene Protein,HER-4, Proto-oncogene Protein,Protein HER-4, Proto-oncogene,Protein, HER-4 Proto-oncogene,Proto oncogene Protein HER 4,Proto-oncogene Protein, HER-4,Receptor Protein tyrosine Kinase ErbB 4,Receptor Tyrosine protein Kinase ErbB 4,c ErbB 4 Protein

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