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Hypothesis of Hemoprotein Sensor Confirmed by Ab initio Quantum-Chemical Method

机译:从头算量子化学方法确定的血红蛋白传感器假说

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The nature of the chemical bond of complexes of iron and cobalt porphyrinates with ligands is studied by the quantum-chemical method in the Hartree-Fock self-consistent field approximation using the 3-21G basis set.The addition of oxygen molecule to the MP and MPIm complexes (M=Fe,Co;Im is imidazole) is established to be more favorable than water addition.However,imidazole,which is.the second ligand in the MPImO_2 and MPImH_2O complexes (M=Fe,Co),increases the M-O_2 and M-H_2O binding energies for iron,but decreases them for cobalt.The Co atom is bound with the porphyrin ring more strongly than the iron atom due to the larger total overlap of the atomic orbitals.The calculations of the binding energy in the complexes demonstrate similar changes in the structures of the spatial conformation of the deoxy form (FeP+H_2O) of iron porphyrinate and the oxy form (CoP+O_2) of cobalt porphyrinate.This is an argument in favor of the hypothesis of hemoprotein sensor of partial oxygen stress in tissues.
机译:使用3-21G基集,在Hartree-Fock自洽场近似中,通过量子化学方法研究了卟啉铁和钴卟啉与配体的配合物化学键的性质。 MPIm配合物(M = Fe,Co; Im是咪唑)的建立要比加水更有利。 -O_2和M-H_2O与铁的结合能,但对钴的结合能降低。由于原子轨道的总重合较大,Co原子与卟啉环的结合力比铁原子强。配合物显示了卟啉铁的脱氧形式(FeP + H_2O)和卟啉钴的氧形式(CoP + O_2)的空间构象具有相似的结构变化。 ti中的部分氧胁迫起诉。

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