AI Article Synopsis

  • The study examines how ferric and ferrous cytochromes c' from four types of photosynthetic bacteria react with nitric oxide (NO) using electronic absorption and electron paramagnetic resonance spectroscopies.
  • The affinity for NO among these cytochromes varies with C. vinosum showing the highest affinity, while R. rubrum shows the least, which is linked to the S = 3/2 content of the heme.
  • Additionally, the formation of six- and five-coordinated nitrosylhemes in ferrous cytochrome c' indicates that the stability of the iron-to-histidine bond decreases in the order of Rb. capsulatus, Rps. palustris, C. vinos

Article Abstract

Reactions of ferric and ferrous cytochromes c' from four photosynthetic bacteria (Rhodobacter capsulatus ATCC 11166, Rhodopseudomonas palustris ATCC 17001, Rhodospirillum rubrum ATCC 11170, and Chromatium vinosum ATCC 17899) with nitric oxide have been investigated by electronic absorption and electron paramagnetic resonance spectroscopies. The heme iron(III) of these ferric cytochromes c' has been recently reported to be in a quantum mechanically admixed (S = 5/2, 3/2) state [Fujii, S., Yoshimura, T., Kamada, H., Yamaguchi, K., Suzuki, S., Shidara, S. and Takakuwa, S. (1995) Biochim. Biophys. Acta 1251, 161-169]. The affinity of ferric cytochromes c' for NO among these bacterial species (C. vinosum > Rps. palustris approximately Rb. capsulatus >> R. rubrum) was apparently related to the S = 3/2 content in the or der. In the reaction of ferrous cytochrome c' with NO, six- and five-coordinated nitrosylhemes, which represent species with and without a ligand at the axial position trans to nitrosyl group, have been formed. The content of six-coordinated nitrosylheme in NO-ferrous cytochrome c' has been determined to be Rb. capsulatus approximately Rps. palustris > C. vinosum < R rubrum, suggesting that a stability of iron-to-histidine bond decreases with this order. The NO reactions of ferric and ferrous cytochromes c' from photosynthetic bacteria have been compared with those of cytochromes c' from denitrifying bacteria.

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http://dx.doi.org/10.1016/0167-4838(95)00187-5DOI Listing

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