Nuclear spin selectivity in enzymatic catalysis: A caution for applied biophysics.

Anatoly Buchachenko, Alexander Bukhvostov, Kirill Ermakov, Dmitry Kuznetsov

Journal: Archives of biochemistry and biophysics 2020;667():30-35

PMID: 31029686

Abstract

Nuclear magnetic ions Mg, Ca, and Zn suppress DNA synthesis by 3-5 times with respect to ions with nonmagnetic nuclei. This observation unambiguously evidences that the DNA synthesis occurs by radical pair mechanism, which is well known in chemistry and implies pairwise generation of radicals by electron transfer between reaction partners. This mechanism coexists with generally accepted nucleophilic one; it is switched on, when at least two ions enter into the catalytic site. It is induced by both sorts of ions, magnetic and nonmagnetic but it functions by 3-5 times more efficiently with magnetic ions stimulating radical pair mechanism. Decreasing catalytic activity of polymerases by 3-5 times, nuclear magnetic ions Mg, Ca, and Zn even more strongly, by 30-50 times, increase mortality of cancer cells. The two reasons of this unique phenomenon are suggested: first, the high concentration of nuclear magnetic ions delivered by specific nano-container into the cancer cells, and, second, generation of short DNA fragments by polymerases loaded with nuclear magnetic ions, which is known to activate protein p53, efficiently stimulating apoptosis of cancer cells.

Copyright © 2019. Published by Elsevier Inc.

Address: Institute of Chemical Physics, Russian Academy of Sciences, 119991, Moscow, Russian Federation; Institute of Problems of Chemical Physics, Russian Academy of Sciences, 142432, Chernogolovka, Russian Federation; Scientific Center of the Russian Academy of Sciences, 142432, Chernogolovka, Russian Federation; Moscow State University, Russian Federation.; Russian National Research Medical University, Moscow, 119997, Russian Federation. Electronic address: [email protected].; Russian National Research Medical University, Moscow, 119997, Russian Federation.; Institute of Chemical Physics, Russian Academy of Sciences, 119991, Moscow, Russian Federation; Russian National Research Medical University, Moscow, 119997, Russian Federation.

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