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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Il nuovo cimento della Società Italiana di Fisica 2 (1983), S. 1281-1304 
    ISSN: 0392-6737
    Keywords: Molecular biophysics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Description / Table of Contents: Riassunto Il legame Mn2+-ATP è stato studiato mediante analisi della struttura fine dello spettro di assorbimento alla sogliaK del Mn (EXAFS e XANES), utilizzando la radiazione di sincrotrone del PULS di Frascati. Si presentano e discutono i risultati ottenuti su campioni, sia liofilizzati che liquidi, di soluzioni a temperatura ambiente del complesso Mn-ATP in diverse condizioni dipH per diversi valori del rapporto Mn:ATP. Lo ione Mn appare in coordinazione ottaedrica con gli ossigeni dei gruppi fosfati nel primo strato di coordinazione. I valori trovati per le distanze Mn−O ed Mn−P sono di (2.15±0.05) Å e di (3.4±0.05) Å, rispettivamente, mentre considerazioni teoriche basate sui risultati sperimentali sembrano escludere la presenza di un legame diretto del Mn con l'N(7) dell'adenina. I numeri di coordinazione per il primo e il secondo strato di coordinazione suggeriscono la formazione di un complesso Mn-(ATP)2 in soluzione apH=9 e con Mn:ATP=1:10, mentre, a piú bassipH e piú alti valori del rapporto Mn:ATP, si trova il complesso Mn-ATP=1:1.
    Abstract: Резюме Исследуется связь ионов Mn2+ в ATP молекулах, с помощью анализа тонкой структуры спектров поглощения рентгеновских лучей (EXAFS и XANES) наК-краю Mn, используя сихнротронное излучение в Фраскати. Приводятся и обсуждаются полученные результаты в замороженных-сухих и жидких образцах водных растворов при комнатной температуре комплекса Mn−ATP при различных значенияхpH и отношения Mn:ATP. Оказывается, что ион Mn2+ находится в восьмигранной координации с кислородом фосфатной группы в первой коористояний Mn−O и Mn−P. Теоретические рассмотрения и экспериментальные результаты не подтверждают существования прямой связи Mn с атомом N(7) в кольце аденина. Координатные числа для первой и второй оболочек согласуются с образованием комплекса Mn(ATP)2 в растворе приpH=9 и Mn:ATP=1:10, тогда как комплекс Mn ATP 1:1 появляется при меньшихpH и больших отношениях Mn:ATP.
    Notes: Summary The binding of Mn2+ ions to ATP molecules has been studied by means of the fine-structure analysis of X-ray absorption spectra (EXAFS and XANES) at theK-edge of Mn using the synchrotron, radiation facility PULS in Frascati. The results obtained in both freeze-dried and liquid samples of aqueous solutions at room temperature of the Mn-ATP complex under diffrent values ofpH and Mn:ATP ratio are reported and discussed. The Mn2+ ion appears to be octahedrally coordinated, the phosphate oxygen atoms being in the first co-ordination shell. Values of (2.15±0.05) Å and (3.4±0.05) Å, respectively, have been found for Mn-O and Mn-P distances. Theoretical considerations together with experimental results do not support the existence of a direct binding of the Mn to the N(7) atom of the adenine ring. The coordination numbers for the first and second shell are consistent with the formation of a Mn(ATP)2 complex in solution atpH=9 and Mn: ATP=1:10, while a Mn-ATP 1:1 complex is found at lowerpH and higher Mn: ATP ratios.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1090-6487
    Keywords: 52.25.Nr ; 52.70.La ; 52.58.Hm
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract It is shown that in a dense, not very hot, multiply charged plasma the satellite structures of resonance lines can become more intense than the resonance lines themselves. Experimental and theoretical investigations show that the conditions under which the satellite structures dominate in the emission spectrum of the plasma are quite easily realized experimentally and, furthermore, apparently they will be the most typical case in investigations of compressed plasma regions in inertial-confinement fusion experiments and in the study of plasma produced by high-contrast pico-and femtosecond laser pulses.
    Type of Medium: Electronic Resource
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