Bioinformatics · 2002 · 19 citations · 25 references
This paper presents the Lattice Molecular Automaton, a Cellular Automaton-based simulation tool, capable of representing complex molecular dynamics at different levels of granularity. A data structure concept represents molecular units, whose dynamics, embedded on a 2D grid, is defined via detailed intermolecular interaction profiles. The data structures hold diverse information as molecular type, potential, as well as kinetic energy states, which allows a precise representation of intracellular reaction networks. The molecular dynamics is performed via local computation of individual molecular states on the lattice, which, in conjunction with discretized space and time, enables excellent scalability of this simulation concept. This paper finally gives Lattice Molecular Automaton simulation results on key elements of apoptosis, the cell death cascade, in particular focusing on the regulatory function of homo- and heterodimerization of members of the Bcl-2 protein family in the apoptosis effector phase. The regulatory proteins Bcl2, Bax, and Bak constitute a diffusion-driven molecular switch with inherent damping of apoptosis induction, thereby controlling the apoptosis reaction cascade under noisy, external apoptosis inducing conditions.
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Prevention of Apoptosis by Bcl-2: Release of Cytochrome c from Mitochondria Blocked
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Mitophagy, Apoptosis, Cell Death +17
The Release of Cytochrome c from Mitochondria: A Primary Site for Bcl-2 Regulation of Apoptosis
Ruth M. Kluck, Ella Bossy‐Wetzel, Douglas R. Green et al. · Science · 1997 · 4.7K citations
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U. Frisch, B. Hasslacher, Yves Pomeau · Physical Review Letters · 1986 · 2.7K citations · Full text
X-ray and NMR structure of human Bcl-xL, an inhibitor of programmed cell death
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