AI Article Synopsis

  • Hint1 is a homodimeric protein involved in hydrolyzing purine phosphoramidates and is altered by mutating its dimer interface, leading to the formation of monomers.
  • Studies revealed that while certain mutants (like V97D and V97E) show little stability difference compared to the wild-type, the V97D mutant has a significantly altered structure.
  • Wild-type hHint1 is much more efficient in catalyzing reactions compared to the mutants, highlighting the importance of homodimerization for the enzyme's catalytic efficiency rather than its maximum turnover rate.

Article Abstract

Hint1 is a homodimeric protein and member of the ubiquitous HIT superfamily. Hint1 catalyzes the hydrolysis of purine phosphoramidates and lysyl-adenylate generated by lysyl-tRNA synthetase (LysRS). To determine the importance of homodimerization on the biological and catalytic activity of Hint1, the dimer interface of human Hint1 (hHint1) was destabilized by replacement of Val(97) of hHint1 with Asp, Glu, or Arg. The mutants were shown to exist as monomers in solution by a combination of size exclusion chromatograph, static light scattering, and chemically induced dimerization studies. Circular dichroism studies revealed little difference between the stability of the V97D, V97E, and wild-type hHint1. Relative to wild-type and the V97E mutant, however, significant perturbation of the V97D mutant structure was observed. hHint1 was shown to prefer 3-indolepropionic acyl-adenylate (AIPA) over tryptamine adenosine phosphoramidate monoester (TpAd). Wild-type hHint1 was found to be 277- and 1000-fold more efficient (k(cat)/K(m) values) than the V97E and V97D mutants, respectively. Adenylation of wild-type, V97D, and V97E hHint1 by human LysRS was shown to correlate with the mutant k(cat)/K(m) values using 3-indolepropionic acyl-adenylate as a substrate, but not tryptamine adenosine phosphoramidate monoester. Significant perturbations of the active site residues were not detected by molecular dynamics simulations of the hHint1s. Taken together, these results demonstrate that for hHint1; 1) the efficiency (k(cat)/K(m)) of acylated AMP hydrolysis, but not maximal catalytic turnover (k(cat)), is dependent on homodimerization and 2) the hydrolysis of lysyl-AMP generated by LysRS is not dependent on homodimerization if the monomer structure is similar to the wild-type structure.

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http://dx.doi.org/10.1074/jbc.M606972200DOI Listing

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Article Synopsis
  • Hint1 is a homodimeric protein involved in hydrolyzing purine phosphoramidates and is altered by mutating its dimer interface, leading to the formation of monomers.
  • Studies revealed that while certain mutants (like V97D and V97E) show little stability difference compared to the wild-type, the V97D mutant has a significantly altered structure.
  • Wild-type hHint1 is much more efficient in catalyzing reactions compared to the mutants, highlighting the importance of homodimerization for the enzyme's catalytic efficiency rather than its maximum turnover rate.
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