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Copper catalysis of human hemoglobin Cysbeta93 S-nitrosation and heme nitrosylation by S-nitrosoglutathione

Posted on:2005-03-08Degree:Ph.DType:Dissertation
University:Concordia University (Canada)Candidate:Romeo, Andrea AFull Text:PDF
GTID:1451390008484545Subject:Chemistry
Abstract/Summary:
There is evidence that binding of the vasorelaxant, nitric oxide (NO), to Cysbeta93 of human adult hemoglobin (Hb) plays a role in blood pressure regulation. S-Nitrosation of Cysbeta93 by low-molecular-weight S-nitrosothiols (RSNOs) such as S-nitrosoglutathione (GSNO) was directly probed by FTIR by monitoring the nu(SH) vibrations of Hb and by ESI-MS. The results indicate that Cysbeta93 is S-nitrosated when oxyHb (HbFeIIO2 ), but not deoxyHb (HbFeII), is exposed to GSNO (1:1 heme/GSNO). No FTIR or ESI-MS evidence was obtained for oxyHb S-nitrosation in the presence of DTPA (a CuII chelator) and neocuproine (a CuI chelator). Monitoring the heme Soret and visible bands revealed that oxyHb was converted to metHb (HbFeIII) in the presence of excess GSNO over Cysbeta93 and that this was inhibited on addition of neocuproine. The combined data are consistent with a mechanism involving CuII-catalysis of Cysbeta93 S-nitrosation by free NO generated by CuI-catalysis of GSNO breakdown but not with trans-S-nitrosation (NO+ transfer between thiols).; Reductive cleavage of GSNO by deoxyHb to release free NO that binds to additional deoxyHb to give nitrosylHb was recently reported [Spencer, N. Y., Zeng, H., Patel, R. P., and Hogg, N. (2000) J. Biol. Chem. 275(47), 36562]. The reaction between GSNO and deoxyHb was reexamined in the presence of both neocuproine and DTPA using a copper-depleted Hb solution prepared by exhaustive dialysis vs. EDTA. Direct spectroscopic and mass spectral analyses of the deoxyHb/GSNO incubates show that nitrosylHb formation was significantly decelerated in presence of neocuproine. Deceleration was less in the presence of DTPA and in Hb solutions dialyzed vs. EDTA.; NitrosylHb formation was almost totally inhibited when neocuproine was added to dialyzed deoxyHb plus GSNO. Extensive GSSG formation was observed by mass spectrometry in deoxyHb/GSNO incubates in the absence of metal chelators where deoxyHb nitrosylation was complete in <5 min. The data presented are inconsistent with direct reduction of GSNO by deoxyHb but indicate a mechanism involving free NO generated by Cu I catalysis of GSNO breakdown and CuII reduction by GSH.; The Cu and Zn content in commercial human Hb samples was determined by ICP-MS, and ∼20 muM of each metal was present in 5 mM Hb solutions. (Abstract shortened by UMI.)...
Keywords/Search Tags:Cysbeta93, GSNO, Human, Free NO, S-nitrosation
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