TY - JOUR
T1 - R-state haemoglobin with low oxygen affinity
T2 - Crystal structures of deoxy human and carbonmonoxy horse haemoglobin bound to the effector molecule L35
AU - Yokoyama, Takeshi
AU - Neya, Saburo
AU - Tsuneshige, Antonio
AU - Yonetani, Takashi
AU - Park, Sam Yong
AU - Tame, Jeremy R.H.
N1 - Funding Information:
This work has been supported in part by a research grant (HL14508) from the US National Institutes of Health. We thank Dr Martin Safo and Professor Roy Weber for reading the manuscript.
PY - 2006/2/24
Y1 - 2006/2/24
N2 - Although detailed crystal structures of haemoglobin (Hb) provide a clear understanding of the basic allosteric mechanism of the protein, and how this in turn controls oxygen affinity, recent experiments with artificial effector molecules have shown a far greater control of oxygen binding than with natural heterotropic effectors. Contrary to the established text-book view, these non-physiological compounds are able to reduce oxygen affinity very strongly without switching the protein to the T (tense) state. In an earlier paper we showed that bezafibrate (BZF) binds to a surface pocket on the α subunits of R state Hb, strongly reducing the oxygen affinity of this protein conformation. Here we report the crystallisation of Hb with L35, a related compound, and show that this binds to the central cavity of both R and T state Hb. The mechanism by which L35 reduces oxygen affinity is discussed, in relation to spectroscopic studies of effector binding.
AB - Although detailed crystal structures of haemoglobin (Hb) provide a clear understanding of the basic allosteric mechanism of the protein, and how this in turn controls oxygen affinity, recent experiments with artificial effector molecules have shown a far greater control of oxygen binding than with natural heterotropic effectors. Contrary to the established text-book view, these non-physiological compounds are able to reduce oxygen affinity very strongly without switching the protein to the T (tense) state. In an earlier paper we showed that bezafibrate (BZF) binds to a surface pocket on the α subunits of R state Hb, strongly reducing the oxygen affinity of this protein conformation. Here we report the crystallisation of Hb with L35, a related compound, and show that this binds to the central cavity of both R and T state Hb. The mechanism by which L35 reduces oxygen affinity is discussed, in relation to spectroscopic studies of effector binding.
KW - Allosteric effector
KW - Bezafibrate derivative
KW - Conformation
KW - X-ray crystallography
UR - http://www.scopus.com/inward/record.url?scp=31344438645&partnerID=8YFLogxK
U2 - 10.1016/j.jmb.2005.12.018
DO - 10.1016/j.jmb.2005.12.018
M3 - 学術論文
C2 - 16403522
AN - SCOPUS:31344438645
SN - 0022-2836
VL - 356
SP - 790
EP - 801
JO - Journal of Molecular Biology
JF - Journal of Molecular Biology
IS - 3
ER -