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Full-Text Articles in Molecular Biology

Role Of Heat Shock Protein 70 Kda Cognate In Limiting Thermal Inactivation And Refolding Of Heat-Denatured Nuclear Type I Topoisomerase, Kuo-Kuang Wen Oct 1994

Role Of Heat Shock Protein 70 Kda Cognate In Limiting Thermal Inactivation And Refolding Of Heat-Denatured Nuclear Type I Topoisomerase, Kuo-Kuang Wen

Theses and Dissertations in Biomedical Sciences

Previous studies (Ciavarra et al., 1994) demonstrated that the constitutive 70 kDa heat shock protein (hsc70) protected purified topoisomerase I from thermal injury. In addition, hsc70 was capable of regenerating catalytic activity of heat-denatured topoisomerase I. A whole cell lysate was also active in this reaction assay. The present study demonstrates that heat-denatured topoisomerase I is reactivated by a cytosolic fraction and that this activity is dependent on the presence of cytosolic hsc70. The efficacy of hsc70-mediated refolding of heat-denatured topoisomerase I is greatly enhanced by a cytosolic cofactor(s). In all these refolding reactions, exogenous ATP is not required. Size …


Translational Regulation Of The C-Jun Proto-Oncogene, Anil Sehgal Apr 1994

Translational Regulation Of The C-Jun Proto-Oncogene, Anil Sehgal

Theses and Dissertations in Biomedical Sciences

The v-jun oncogene was originally isolated from the ASV17 virus in 1987. Ever since its isolation, extensive work has been done to understand the role of the v-jun oncogene in cell transformation. The c-Jun protein is a transcription factor which binds to the DNA target TGACTCA. The c-Jun protein binds to DNA in the form of dimers. It can form homodimers with itself and heterodimers with Jun family (JunB and JunD), Fos family (FosB, Fra1 and Fra2), or with CREB family members through the leucine zipper motif. Because the c-jun proto-oncogene plays an important role in cell transformation, extensive work …


Binding Of Matrix Attachment Regions To Lamin Polymers Involves Single-Stranded Regions And The Minor Groove., M. E. Eva Ludérus, Jan L. Den Blaauwen, Oncko J. De Smit, Duane A. Compton, Roel Van Driel Jan 1994

Binding Of Matrix Attachment Regions To Lamin Polymers Involves Single-Stranded Regions And The Minor Groove., M. E. Eva Ludérus, Jan L. Den Blaauwen, Oncko J. De Smit, Duane A. Compton, Roel Van Driel

Dartmouth Scholarship

Chromatin in eukaryotic nuclei is thought to be partitioned into functional loop domains that are generated by the binding of defined DNA sequences, named MARs (matrix attachment regions), to the nuclear matrix. We have previously identified B-type lamins as MAR-binding matrix components (M. E. E. Ludérus, A. de Graaf, E. Mattia, J. L. den Blaauwen, M. A. Grande, L. de Jong, and R. van Driel, Cell 70:949-959, 1992). Here we show that A-type lamins and the structurally related proteins desmin and NuMA also specifically bind MARs in vitro. We studied the interaction between MARs and lamin polymers in molecular detail …