2q2b: Difference between revisions

From Proteopedia
Jump to navigationJump to search
OCA (talk | contribs)
No edit summary
OCA (talk | contribs)
No edit summary
Line 4: Line 4:


==Overview==
==Overview==
Acyl-CoA thioesterases (Acots) catalyze the hydrolysis of fatty acyl-CoA, to free fatty acid and CoA and thereby regulate lipid metabolism and, cellular signaling. We present a comprehensive structural and functional, characterization of mouse acyl-CoA thioesterase 7 (Acot7). Whereas, prokaryotic homologues possess a single thioesterase domain, mammalian, Acot7 contains a pair of domains in tandem. We determined the crystal, structures of both the N- and C-terminal domains of the mouse enzyme, and, inferred the structure of the full-length enzyme using a combination of, chemical cross-linking, mass spectrometry, and molecular modeling. The, quaternary arrangement in Acot7 features a trimer of hotdog fold dimers., Both domains of Acot7 are required for activity, but only one of two, possible active sites in the dimer is functional. Asn-24 and Asp-213 (from, N- and C-domains, respectively) were identified as the catalytic residues, through site-directed mutagenesis. An enzyme with higher activity than, wild-type Acot7 was obtained by mutating the residues in the nonfunctional, active site. Recombinant Acot7 was shown to have the highest activity, toward arachidonoyl-CoA, suggesting a function in eicosanoid metabolism., In line with the proposal, Acot7 was shown to be highly expressed in, macrophages and up-regulated by lipopolysaccharide. Overexpression of, Acot7 in a macrophage cell line modified the production of prostaglandins, D2 and E2. Together, the results link the molecular and cellular functions, of Acot7 and identify the enzyme as a candidate drug target in, inflammatory disease.
Acyl-CoA thioesterases (Acots) catalyze the hydrolysis of fatty acyl-CoA to free fatty acid and CoA and thereby regulate lipid metabolism and cellular signaling. We present a comprehensive structural and functional characterization of mouse acyl-CoA thioesterase 7 (Acot7). Whereas prokaryotic homologues possess a single thioesterase domain, mammalian Acot7 contains a pair of domains in tandem. We determined the crystal structures of both the N- and C-terminal domains of the mouse enzyme, and inferred the structure of the full-length enzyme using a combination of chemical cross-linking, mass spectrometry, and molecular modeling. The quaternary arrangement in Acot7 features a trimer of hotdog fold dimers. Both domains of Acot7 are required for activity, but only one of two possible active sites in the dimer is functional. Asn-24 and Asp-213 (from N- and C-domains, respectively) were identified as the catalytic residues through site-directed mutagenesis. An enzyme with higher activity than wild-type Acot7 was obtained by mutating the residues in the nonfunctional active site. Recombinant Acot7 was shown to have the highest activity toward arachidonoyl-CoA, suggesting a function in eicosanoid metabolism. In line with the proposal, Acot7 was shown to be highly expressed in macrophages and up-regulated by lipopolysaccharide. Overexpression of Acot7 in a macrophage cell line modified the production of prostaglandins D2 and E2. Together, the results link the molecular and cellular functions of Acot7 and identify the enzyme as a candidate drug target in inflammatory disease.


==About this Structure==
==About this Structure==
Line 14: Line 14:
[[Category: Palmitoyl-CoA hydrolase]]
[[Category: Palmitoyl-CoA hydrolase]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Forwood, J.K.]]
[[Category: Forwood, J K.]]
[[Category: Guncar, G.]]
[[Category: Guncar, G.]]
[[Category: Kobe, B.]]
[[Category: Kobe, B.]]
Line 20: Line 20:
[[Category: c-terminal domain]]
[[Category: c-terminal domain]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Wed Jan 23 14:32:38 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 18:35:18 2008''