Abstract

The nature of the binding of a high mobility group protein (HMG 17) to native and H1-H5-depleted chicken erythrocyte chromatin was studied, as a function of ionic strength, using circular dichroism and thermal denaturation techniques. The circular dichroism properties of the HMG 17-reconstituted whole chromatin and H1-H5-depleted chromatin demonstrated that a condensation of chromatin structure occurred upon HMG 17 binding at low ionic strength (1 mM Na phosphate, 0.25 mM EDTA, pH 7.0). Thermal denaturation profiles confirmed this change in the structure of chromatin induced by HMG 17. Thermal denaturation profiles were resolved into three-component transitions. In general, a shift in the temperature of maximum dh/dT for each transition (Tm) was observed for all transitions upon HMG 17 binding. DNA melting in the first transition, originating from linker regions of whole chromatin, was nearly totally depleted and was distributed mainly into the highest melting transition. The same trends were also observed in H1-H5-depleted chromatin. These results indicate that the binding sites of HMG 17 are situated in the linker regions immediately adjacent to the core. The nature of the interaction of HMG 17 at higher ionic strength (50 mM NaCl, 1 mM Na phosphate, 0.25 mM EDTA, pH 7.0) with whole chromatin and H1-H5-depleted chromatin was found to be different but a decrease in [theta] values was found in both chromatins. These observations suggest that HMG 17 does not loosen chromatin structure but produces an overall stabilization and condensation of structure. The implications of these results to the currently accepted models of transcriptionally active chromatin are discussed.

Highlights

  • The same trends were observed in H1-H5-depleted chromatin

  • 0.25 nm EDTA, pH7.0) with whole chro- lecular weight chromatin has not been studied in detail

  • To matin and H1-H5-depleted chromatin was found to be probe the possible effects of HMG 17 on chromatin structure different but a decrease in [O] values was found in both chromatins

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Summary

RESULTS AND DISCUSSION

The amount of HMG 17 bound during reconstitution was determined by SDS-gel electrophoresis. The relative staining intensities of HMG 17 were found to be 0.20 and 0.44 with respect to H4 for input molar ratios of 1and 2/200 base pairs of DNA in wholechromatin. Since there are molecules of H4 present for every nucleosomal repeat in chromatin, the molar ratios of HMG 17 bound after reconstitution are only 0.40 and 0.88 mol for the input molar ratios of 1 and 2/200 base pairs of DNA, respectively. Approximately only 50%of added HMG 17 is bound to chromatin in ourreconstitution This is true for the reconstitution of HMG 17 with. This loss of materialmay be partly due to the adsorption of this protein on the dialysis tubing during gradient dialysis. The amountosf HMG 17 bound after reconstitution are farabove the ratio present inwhole nuclei

Thermal Denaturation Studies
Wchhromle atin
CONCLUSIONS AND SUMMARY
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