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Electronic Control of Discrimination between O22 and CO in Myoglobin Lacking the Distal Histidine Residue.

Authors :
Ryu Nishimura
Tomokazu Shibata
Izumi Ishigami
Takashi Ogura
Hulin Tai
Satoshi Nagao
Takashi Matsuo
Shun Hirota
Osami Shoji
Yoshihito Watanabe
Kiyohiro Imai
Saburo Neya
Akihiro Suzuki
Yasuhiko Yamamoto
Source :
Inorganic Chemistry. 1/20/2014, Vol. 53 Issue 2, p1091-1099. 9p.
Publication Year :
2014

Abstract

We analyzed the oxygen (O,) and carbon monoxide (CO) binding properties of the H64L mutant of myoglobin reconstituted with chemically modified heme cofactors possessing a heme Fe atom with a variety of electron densities, in order to elucidate the effect of the removal of the distal His64 on the control of both the O2 affinity and discrimination between O2 and CO of the protein by the intrinsic heme Fe reactivity through the electron density of the heme Fe atom (ρFe). The study revealed that, as in the case of the native protein, the O2: affinity of the H64L mutant protein is regulated by the ρFe value in such a manner that the O2 affinity of the protein decreases, due to an increase in the O2 dissociation rate constant, with a decrease in the ρFe value, and that the O2 affinities of the mutant and native proteins are affected comparably by a given change in the ρFe value. On the other hand, the CO affinity of the H64L mutant protein was found to increase, due to a decrease in the CO dissociation rate constant, with a decrease in the ρFe value, whereas that of the native protein was essentially independent of a change in the ρFe value. As a result, the regulation of the O2/CO discrimination in the protein through the ρFe value is affected by the distal His64. Thus, the study revealed that the electronic tuning of the intrinsic heme Fe reactivity through the ρFe value plays a vital role in the regulation of the protein function, as the heme environment furnished by the distal His64 does. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00201669
Volume :
53
Issue :
2
Database :
Academic Search Index
Journal :
Inorganic Chemistry
Publication Type :
Academic Journal
Accession number :
95261378
Full Text :
https://doi.org/10.1021/ic402625s