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Mechanism of arginine regulation of acetylglutamate synthase, the first enzyme of arginine synthesis
Authors:Enea Sancho-Vaello  Vicente Rubio
Affiliation:Instituto de Biomedicina de Valencia (IBV-CSIC) and Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER-ISCIII), Jaime Roig 11, 46010 Valencia, Spain
Abstract:N-acetyl-l-glutamate synthase (NAGS), the first enzyme of arginine biosynthesis in bacteria/plants and an essential urea cycle activator in animals, is, respectively, arginine-inhibited and activated. Arginine binds to the hexameric ring-forming amino acid kinase (AAK) domain of NAGS. We show that arginine inhibits Pseudomonas aeruginosa NAGS by altering the functions of the distant, substrate binding/catalytic GCN5-related N-acetyltransferase (GNAT) domain, increasing View the MathML source, decreasing Vmax and triggering substrate inhibition by AcCoA. These effects involve centrally the interdomain linker, since we show that linker elongation or two-residue linker shortening hampers and mimics, respectively, arginine inhibition. We propose a regulatory mechanism in which arginine triggers the expansion of the hexameric NAGS ring, altering AAK-GNAT domain interactions, and the modulation by these interactions of GNAT domain functions, explaining arginine regulation.
Keywords:AAK, amino acid kinase   GNAT, GCN5-related N-acetyltransferase   NAG, N-acetyl-  smallcaps"  >l-glutamate   NAGK, N-acetyl-  smallcaps"  >l-glutamate kinase   NAGS, N-acetyl-  smallcaps"  >l-glutamate synthase   Pa, Pseudomonas aeruginosa   Ng, Neisseria gonorrhoeae   WT, wild-type   +A, +2A, &minus  Q and &minus  EQ, mutants with the respective linker sequences 282QEQAFEQ, 282QEAQAFEQ, 282QEFEQ and 282QFEQ
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