The ligand rebinding kinetics after photolysis of the CO complexes of Arabidopsis thaliana hemoglobins AHb1 and AHb2 in solution show very different amplitudes in the geminate phase, reflecting different migration pathways of the photodissociated ligand in the system of internal cavities accessible from the heme. The dependence of the geminate phase on CO concentration, temperature, encapsulation in silica gels and presence of glycerol confirms a remarkable difference in the internal structure of the two proteins and a dramatically different role of protein dynamics in regulating the reactivity with CO. This finding strongly supports the idea that they have distinct physiological functions. (c) 2007 Elsevier B.V. All rights reserved
Type 1 nonsymbiotic hemoglobins are found in a wide variety of land plants and exhibit very high aff...
The increasing number of nonsymbiotic plant hemoglobins discovered in genomic studies in the past de...
Nonsymbiotic hemoglobin AHb1 from Arabidopsis thaliana combines an extremely high oxygen affinity wi...
The ligand rebinding kinetics after photolysis of the CO complexes of Arabidopsis thaliana hemoglobi...
The nonsymbiotic hemoglobins, AHb1 and AHb2, have recently been isolated from Arabidopsis thaliana. ...
AHb1 is a hexacoordinated type 1 nonsymbiotic hemoglobin recently discovered in Arabidopsis thaliana...
AHb1 is a hexacoordinated type 1 nonsymbiotic hemoglobin recently discovered in Arabidopsis thaliana...
We have studied carbon monoxide (CO) migration and binding in the nonsymbiotic hemoglobins AHb1 and ...
We have studied carbon monoxide (CO) migration and binding in the nonsymbiotic hemoglobins AHb1 and ...
This study reports a comparative analysis of the topological properties of inner cavities and the in...
Type 1 non-symbiotic rice hemoglobin (rHb1) shows bis-histidyl heme hexacoordination and is capable ...
Type 1 non-symbiotic rice hemoglobin (rHb1) shows bis-histidyl heme hexacoordination and is capable ...
Type 1 nonsymbiotic hemoglobin from Arabidopsis thaliana (AHb1) shows a partial bis-histidyl hexaco...
Type 1 nonsymbiotic hemoglobin from Arabidopsis thaliana (AHb1) shows a partial bis-histidyl hexacoo...
Using steady-state and time-resolved spectroscopic methods, we show that Fe2+ AHb1 contains a mixtur...
Type 1 nonsymbiotic hemoglobins are found in a wide variety of land plants and exhibit very high aff...
The increasing number of nonsymbiotic plant hemoglobins discovered in genomic studies in the past de...
Nonsymbiotic hemoglobin AHb1 from Arabidopsis thaliana combines an extremely high oxygen affinity wi...
The ligand rebinding kinetics after photolysis of the CO complexes of Arabidopsis thaliana hemoglobi...
The nonsymbiotic hemoglobins, AHb1 and AHb2, have recently been isolated from Arabidopsis thaliana. ...
AHb1 is a hexacoordinated type 1 nonsymbiotic hemoglobin recently discovered in Arabidopsis thaliana...
AHb1 is a hexacoordinated type 1 nonsymbiotic hemoglobin recently discovered in Arabidopsis thaliana...
We have studied carbon monoxide (CO) migration and binding in the nonsymbiotic hemoglobins AHb1 and ...
We have studied carbon monoxide (CO) migration and binding in the nonsymbiotic hemoglobins AHb1 and ...
This study reports a comparative analysis of the topological properties of inner cavities and the in...
Type 1 non-symbiotic rice hemoglobin (rHb1) shows bis-histidyl heme hexacoordination and is capable ...
Type 1 non-symbiotic rice hemoglobin (rHb1) shows bis-histidyl heme hexacoordination and is capable ...
Type 1 nonsymbiotic hemoglobin from Arabidopsis thaliana (AHb1) shows a partial bis-histidyl hexaco...
Type 1 nonsymbiotic hemoglobin from Arabidopsis thaliana (AHb1) shows a partial bis-histidyl hexacoo...
Using steady-state and time-resolved spectroscopic methods, we show that Fe2+ AHb1 contains a mixtur...
Type 1 nonsymbiotic hemoglobins are found in a wide variety of land plants and exhibit very high aff...
The increasing number of nonsymbiotic plant hemoglobins discovered in genomic studies in the past de...
Nonsymbiotic hemoglobin AHb1 from Arabidopsis thaliana combines an extremely high oxygen affinity wi...