[PDF][PDF] Crystal structure and mutagenic analysis of the inhibitor-of-apoptosis protein survivin

SW Muchmore, J Chen, C Jakob, D Zakula… - Molecular cell, 2000 - cell.com
SW Muchmore, J Chen, C Jakob, D Zakula, ED Matayoshi, W Wu, H Zhang, F Li, SC Ng…
Molecular cell, 2000cell.com
The coupling of apoptosis (programmed cell death) to the cell division cycle is essential for
homeostasis and genomic integrity. Here, we report the crystal structure of survivin, an
inhibitor of apoptosis, which has been implicated in both control of cell death and regulation
of cell division. In addition to a conserved N-terminal Zn finger baculovirus IAP repeat,
survivin forms a dimer through a symmetric interaction with an intermolecularly bound Zn
atom located along the molecular dyad axis. The interaction of the dimer-related C-terminal …
Abstract
The coupling of apoptosis (programmed cell death) to the cell division cycle is essential for homeostasis and genomic integrity. Here, we report the crystal structure of survivin, an inhibitor of apoptosis, which has been implicated in both control of cell death and regulation of cell division. In addition to a conserved N-terminal Zn finger baculovirus IAP repeat, survivin forms a dimer through a symmetric interaction with an intermolecularly bound Zn atom located along the molecular dyad axis. The interaction of the dimer-related C-terminal α helices forms an extended surface of ∼70 Å in length. Mutagenesis analysis revealed that survivin dimerization and an extended negatively charged surface surrounding Asp-71 are required to counteract apoptosis and preserve ploidy. These findings may provide a structural basis for a dual role of survivin in inhibition of apoptosis and regulation of cell division.
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