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Biology

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2006

Binding affinity

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Modification Of Human Immunodeficiency Virus Type 1 Reverse Transcriptase To Target Cells With Elevated Cellular Dntp Concentrations, Varuni K. Jamburuthugoda, Pauline Chugh, Baek Kim Jan 2006

Modification Of Human Immunodeficiency Virus Type 1 Reverse Transcriptase To Target Cells With Elevated Cellular Dntp Concentrations, Varuni K. Jamburuthugoda, Pauline Chugh, Baek Kim

Biology

Retroviruses and DNA viruses utilize cellular dNTPs as substrates for their DNA polymerases during viral replication in infected cells. However, because of S phase-dependent dNTP biosynthesis, the availability of cellular dNTPs significantly varies among cell types (e.g. dividing versus nondividing cells and normal versus tumor cells). Here we tested whether alterations in the dNTP utilization efficiency and dNTP binding affinity of viral DNA polymerases can switch viral infection specificity to cell types with different dNTP concentrations. We employed an HIV-1 reverse transcriptase (RT) mutant (Q151N), which is catalytically active only at high dNTP concentrations because of its reduced dNTP binding …


Identification Of The Heparin-Binding Determinants Within Fibronectin Repeat Iii1: Role In Cell Spreading And Growth, Liqiong Gui, Katherine Wojciechowski, Candace D. Gildner, Hristina Nedelkovska, Denise C. Hocking Jan 2006

Identification Of The Heparin-Binding Determinants Within Fibronectin Repeat Iii1: Role In Cell Spreading And Growth, Liqiong Gui, Katherine Wojciechowski, Candace D. Gildner, Hristina Nedelkovska, Denise C. Hocking

Biology

Fibronectins are high molecular mass glycoproteins that circulate as soluble molecules in the blood, and are also found in an insoluble, multimeric form in extracellular matrices throughout the body. Soluble fibronectins are polymerized into insoluble extracellular matrix (ECM) fibrils via a cell-dependent process. Recent studies indicate that the interaction of cells with the ECM form of fibronectin promotes actin organization and cell contractility, increases cell growth and migration, and enhances the tensile strength of artificial tissue constructs; ligation of integrins alone is insufficient to trigger these responses. Evidence suggests that the effect of ECM fibronectin on cell function is mediated …