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Particular structural role of H1 in complexes with DNA and comparison with H2A– and H4–DNA complexes investigated by IR linear dichroism

✍ Scribed by E. Taillandier; J. Taboury; J. Liquier; M. C. Gadenne; M. Champagne; J. Brahms


Publisher
Wiley (John Wiley & Sons)
Year
1979
Tongue
English
Weight
605 KB
Volume
18
Category
Article
ISSN
0006-3525

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✦ Synopsis


Abstract

The particular role of H1 in the structure of histone–DNA associations is shown by means of ir linear dichroism. H1–, H2A–, and H4–DNA complexes are studied for different histone: DNA input ratios and various relative humidities (r.h.). The measurement of the dichroic ratios allows one to determine the secondary structure of DNA in the complexes. It is shown that the progressive addition of histone H2A or H4 to DNA inhibits the structural B → A transition and DNA remains in a B‐type form at low r.h. It is found that the B → A transition is inhibited for 19 or 26 base pairs of DNA per molecule of H2A or H4. The stabilization of DNA in a B‐conformation by H2A and H4 has been also observed by H2B and H3 but with a different efficiency. In contrast, histone H1, which does not belong to the core of the nucleosomes in chromatin, leaves the DNA in H1–DNA complexes free to adopt an A conformation at low r.h. for H1/DNA ratios below 0.6/1. Thus a major difference in the structural role between histone H1 and histones belonging to the nucleosomal core with respect to the conformational flexibility of DNA in the histone–DNA complexes is demonstrated.


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