EVIDENCE FOR THE OCCURRENCE AND DISTRIBUTION OF INORGANIC POLYPHOSPHATES IN VERTEBRATE TISSUES
Norman W. Gabel, Virginia Thomas
Abstract
Norman W. Gabel, Virginia Thomas
Abstract
Abstract Evidence for the occurrence of polyphosphates having apparent chain‐lengths ranging from less than 10 to over 5000 orthophosphate units has been found in adult brain as well as in a number of other mammalian tissues which have been examined. There appears to be three times as much polyphosphate in rat brain as there is in rat liver. Adult rat brain appears to contain at least 15 μg of phosphorus as polyphosphate per g of fresh tissue. In addition, neural polyphosphate is extremely labile to catabolic degradation after death whereas hepatic polyphosphate is relatively more stable. The nature of this inorganic polymer was elucidated through use of the technique of 31P nuclear magnetic resonance spectroscopy. Further structural evidence was obtained by application of the isotopic dilution technique to 32P‐labelled neural polyphosphate mixed with an abiotically prepared inorganic polyphosphate. The conditions and rates of hydrolysis of the biological polyphosphate and a non‐biological polyphosphate were comparable.
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Abstract Evidence for the occurrence of polyphosphates having apparent chain‐lengths ranging from less than 10 to over 5000 orthophosphate units has been found in adult brain as well as in a number of other mammalian tissues which have been examined. There appears to be three times as much polyphosphate in rat brain as there is in rat liver. Adult rat brain appears to contain at least 15 μg of phosphorus as polyphosphate per g of fresh tissue. In addition, neural polyphosphate is extremely labile to catabolic degradation after death whereas hepatic polyphosphate is relatively more stable. The nature of this inorganic polymer was elucidated through use of the technique of 31P nuclear magnetic resonance spectroscopy. Further structural evidence was obtained by application of the isotopic dilution technique to 32P‐labelled neural polyphosphate mixed with an abiotically prepared inorganic polyphosphate. The conditions and rates of hydrolysis of the biological polyphosphate and a non‐biological polyphosphate were comparable.
Key concepts: Polyphosphate, Phosphorus, Chemistry, Isotope dilution, Biochemistry, Hydrolysis, Catabolism, Biology