کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
1317502 | 1499458 | 2013 | 5 صفحه PDF | دانلود رایگان |

• The dioxygen and ROS stability of NiSOD mimics with differential N donors was probed.
• ESI-MS, FT-IR and S K-edge XAS show bis-amidate ligation leads to S-based oxidation.
• O2− leads to extensive oxidative damage of the bis-amidate ligated metallopeptide.
• These results suggest why NiSOD uses the amine/amidate ligand donor set.
Nickel containing superoxide dismutase (NiSOD) is a metalloenzyme that catalyzes the disproportionation of O2−. In its reduced state, the Ni(II) ion is coordinated by two cis-cysteinates, an amine nitrogen and an amidate nitrogen atom. It thus bears a resemblance to the distal bis-cysteinate bis-amidate ligated nickel center of acetyl coenzyme A synthase. Using metallopeptide based NiSOD mimics derived from the first 12 residues of the NiSOD sequence we demonstrate that altering the primary coordination sphere from a bis-thiolate amine/amidate motif to a bis-thiolate bis-amidate motif changes the O2 and ROS stability of the metallopeptide. Using FT-IR, ESI-MS and S K-edge XAS we show that the bis-amidate bis-thiolate ligated metallopeptide {NiII(SODm1-Ac)} (SODm1-Ac = AcHN-HCDLPCGVYSPA-COOH) undergoes oxidation at one thiolate ligand in the presence of O2, converting it into a coordinated sulfinate. Upon exposure of {NiII(SODm1-Ac)} to O2− the metallopeptide undergoes extensive sulfur oxidation. This can be contrasted with the unacylated metallopeptide {NiII(SODm1)} which does not undergo sulfur based oxidation under these conditions. The biological implications of these findings are discussed.
Unlike the amine/amidate NiN2S2 motif found in NiSOD the related bis-amidate motif is sensitive to O2 oxidation.Figure optionsDownload as PowerPoint slide
Journal: Journal of Inorganic Biochemistry - Volume 129, December 2013, Pages 145–149