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Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide.

Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Research Abstract Details 

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  • Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Abstract Text:

    t andoT Ando,h asaiH Asai,

    Systematic studies were carried out to determine how the dynamic quenching of fluorescence was affected by electrostatic interaction between charges carried by the fluorophore and the quencher. 1,N6-Ethenoadenosine oligophosphates (epsilon-ATP, epsilon-ADP, epsilon-AMP, and epsilon-Ad) were used as fluorophores; these compounds have the same luminous group (epsilon-adenine ring) with variously charged phosphate groups. Acrylamide and the iodide (I-), well known to be effective quenchers carrying zero and one negative charge, respectively, were used as quenchers. The thallium (I) (Tl+) was also found to be an effective quencher as a result of studies of the quenching activity of various positively charged ions. Results which agreed qualitatively with those expected were obtained for the charge effects on the dynamic quenching and the effects of ionic strength on it. That is, the repulsive force exerted between I- and phosphate groups decreased the quenching rate, and increasing ionic strength of solutions mitigated these charge effects. The results obtained, however, were not quantitatively consistent with theoretical expectations for ionic reaction rates in solutions. One reason for the quantitative disagreement is that the negatively charged phosphate groups are located at a distance from the luminous group. By theoretical analysis of the quenching data, the distance was calculated to be 9.6 A + delta r, where delta r changes according to the number of phosphate groups. Furthermore, through a theoretical analysis of the disagreement, we found a new factor, the "size effect" of a luminous group, which modifies the charge effects on dynamic quenching. The size effect provides information on the gradient of the electric potential generated by the phosphate groups. These studies provide a basis for the study of electric potential at local regions of proteins.

    Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Publishing Authors By Initials

    t andoT Ando,h asaiH Asai,

    For similar inorganic chemicals: elements: metals, heavy: thallium research abstracts see: inorganic chemicals: elements: metals, heavy: thallium research

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    Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Journal of biochemistry

    VOLUME: 88

    Page Numbers: 255-64

    Journal Abbreviation: J. Biochem.

    ISSN: 0021-924X

    DAY: 19

    MONTH: Jul

    YEAR: 1980

    Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 376600

    Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Keywords Mesh Terms:

    KEYWORDS: Thallium

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    Chemical & Substance for Abstract: Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide. Information

    Substance Name: Thallium

    Registry Number: 7440-28-0

    Grant and Affiliation Information for Charge effects on the dynamic quenching of fluorescence of 1,N6-ethenoadenosine oligophosphates by iodide, thallium (I) and acrylamide.

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    Country: JAPAN

    JAPAN Research PublicationJAPAN Research Publication

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    MEDLINETA: J Biochem

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