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Mechanistic study of human proteins that regulate cell proliferation and differentiation
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Cancer Science & Therapy

ISSN: 1948-5956

Open Access

Mechanistic study of human proteins that regulate cell proliferation and differentiation


4th World Congress on Cancer Science & Therapy

October 20-22, 2014 DoubleTree by Hilton Hotel Chicago-North Shore Conference Center, USA

Guang Zhu

Scientific Tracks Abstracts: J Cancer Sci Ther

Abstract :

Proper organ development requires the precise regulation of both the total number of cells (cell proliferation) and the types of cells (cell differentiation). During cell proliferation, Cdt1 mediated loading of DNA helicase (Mcm2-7) to replication origins is required for DNA replication. And Hox gene activation is necessary for embryonic cell differentiation. It has been shown that these two processes are linked through the cell cycle-regulator Geminin and the homeodomain-containing transcription factors Hox. To understand the molecular mechanism involved, we determined the solution structures of Geminin-Hox and Cdt1-Mcm6 complexes by nuclear magnetic resonance (NMR) spectroscopy and conducted biochemical study to delineate the structural basis of this mutual regulation. In addition, we found that histone H4-K20 methyltransferase SET8 is a new cellcycle regulator and plays an important role in the developmental program of metazoans.

Biography :

Guang Zhu is a Professor of Division of Life Science, The Hong Kong University of Science and Technology. He obtained his BSc and MSc in Physics. He studied for his PhD degree at University of Maryland and National Institutes of Health, USA, specialized in biomolecular NMR spectroscopy. Currently his research focuses on structure-functional study of human proteins in DNA replication. Studies on the molecular mechanisms of proteins involved in DNA replication provide basis for structure-based drug design against cancer. He has published more than 75 peer-reviewed reports. He has served on the editorial boards of International Journal of Spectroscopy and Chinese Journal of Magnetic Resonance.

Google Scholar citation report
Citations: 3968

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