Membrane topology of hedgehog acyltransferase Journal Article


Authors: Matevossian, A.; Resh, M. D.
Article Title: Membrane topology of hedgehog acyltransferase
Abstract: Hedgehog acyltransferase (Hhat) is a multipass transmembrane enzyme that mediates the covalent attachment of the 16-carbon fatty acid palmitate to the N-terminal cysteine of Sonic Hedgehog (Shh). Palmitoylation of Shh by Hhat is critical for short and long range signaling. Knowledge of the topological organization of Hhat transmembrane helices would enhance our understanding of Hhat-mediated Shh palmitoylation. Bioinformatics analysis of transmembrane domains within human Hhat using 10 different algorithms resulted in highly consistent predictions in the C-terminal, but not in the N-terminal, region of Hhat. To empirically determine the topology of Hhat, we designed and exploited Hhat constructs containing either terminal or 12 different internal epitope tags. We used selective permeabilization coupled with immunofluorescence as well as a protease protection assay to demonstrate that Hhat contains 10 transmembrane domains and 2 re-entrant loops. The invariant His and highly conserved Asp residues within the membrane-bound O-acyltransferase (MBOAT) homology domain are segregated on opposite sides of the endoplasmic reticulum membrane. The localization of His-379 on the lumenal membrane surface is consistent with a role for this invariant residue in catalysis. Analysis of the activity and stability of the Hhat constructs revealed that the C-terminal MBOAT domain is especially sensitive to manipulation. Moreover, there was remarkable similarity in the overall topological organization of Hhat and ghrelin O-acyltransferase, another MBOAT family member. Knowledge of the topological organization of Hhat could serve as an important tool for further design of selective Hhat inhibitors.
Keywords: controlled study; unclassified drug; human cell; nonhuman; protein localization; carboxy terminal sequence; immunofluorescence; enzyme activity; endoplasmic reticulum; amino terminal sequence; cell membranes; fatty acids; catalysis; amino acids; computer model; bioinformatics; erinaceidae; aspartic acid; enzyme assay; acyltransferase; membrane permeability; histidine; acylation; topology; enzyme stability; hedgehog acyltransferase; membrane structure; empirical research; activation analysis; permeabilization; palmitic acid; protection assay; human; article; trans-membrane domains; covalent attachment; knowledge management; bioinformatics analysis; endoplasmic reticulum membranes; membrane topology; transmembrane helices; ghrelin o acyltransferase; protease protection assay
Journal Title: Journal of Biological Chemistry
Volume: 290
Issue: 4
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 2015-01-23
Start Page: 2235
End Page: 2243
Language: English
DOI: 10.1074/jbc.M114.625764
PROVIDER: scopus
PMCID: PMC4303674
PUBMED: 25488661
DOI/URL:
Notes: Export Date: 2 March 2015 -- Source: Scopus
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  1. Marilyn D Resh
    120 Resh