Guanosine derivatives, dissolved in water, can form cholesteric and hexagonal mesophases. The common structural unit is a chiral rod-shaped aggregate consisting of a stack of Hoogsten-bonded guanosine tetrameric disks. In order to elucidate the self-association process, we decided to investigate, by small-angle neutron scattering, the structural properties of d(pG), d(GpG), d(GpGpG), d(GpGpGpG) and d(GpGpGpGpGpG) derivatives in very dilute solutions. Under our experimental conditions only d(pG) seems not to form detectable particles. On the other hand, the results for the other derivatives indicate that cylindrical aggregates, having a 10 angstrom cross-section gyration radius and a length of about 70 angstrom exist in the isotropic phase. According to the structure of the hexagonal and cholesteric phases, we fitted the experimental data by using a model of rod-shaped aggregates formed by stacking about 18 to 20 guanosine tetramers. Moreover, from the measurement of the concentration of scattering particles, we deduced that guanosine derivatives are only partially aggregated, depending on their ability to form mesophases.

STRUCTURAL ORGANIZATION OF GUANOSINE DERIVATIVES IN DILUTE-SOLUTIONS - SMALL-ANGLE NEUTRON-SCATTERING ANALYSIS / Carsughi, Flavio; Ceretti, M.; Mariani, Paolo. - In: EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS. - ISSN 0175-7571. - STAMPA. - 21:2(1992), pp. 155-161. [10.1007/BF00185430]

STRUCTURAL ORGANIZATION OF GUANOSINE DERIVATIVES IN DILUTE-SOLUTIONS - SMALL-ANGLE NEUTRON-SCATTERING ANALYSIS

CARSUGHI, Flavio;MARIANI, Paolo
1992-01-01

Abstract

Guanosine derivatives, dissolved in water, can form cholesteric and hexagonal mesophases. The common structural unit is a chiral rod-shaped aggregate consisting of a stack of Hoogsten-bonded guanosine tetrameric disks. In order to elucidate the self-association process, we decided to investigate, by small-angle neutron scattering, the structural properties of d(pG), d(GpG), d(GpGpG), d(GpGpGpG) and d(GpGpGpGpGpG) derivatives in very dilute solutions. Under our experimental conditions only d(pG) seems not to form detectable particles. On the other hand, the results for the other derivatives indicate that cylindrical aggregates, having a 10 angstrom cross-section gyration radius and a length of about 70 angstrom exist in the isotropic phase. According to the structure of the hexagonal and cholesteric phases, we fitted the experimental data by using a model of rod-shaped aggregates formed by stacking about 18 to 20 guanosine tetramers. Moreover, from the measurement of the concentration of scattering particles, we deduced that guanosine derivatives are only partially aggregated, depending on their ability to form mesophases.
1992
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/83775
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