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 , 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 |
本文献已被 ScienceDirect 等数据库收录! |
|