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» The Calculus of Looping Sequences for Modeling Biological Me...
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CORR
2009
Springer
106views Education» more  CORR 2009»
13 years 4 months ago
A framework for protein and membrane interactions
dels at different abstraction levels; in particular, higher-level (e.g. membrane) activities can be given a formal biological justification in terms of low-level (i.e., protein) in...
Giorgio Bacci, Davide Grohmann, Marino Miculan
BMCBI
2008
116views more  BMCBI 2008»
13 years 6 months ago
IgTM: An algorithm to predict transmembrane domains and topology in proteins
Background: Due to their role of receptors or transporters, membrane proteins play a key role in many important biological functions. In our work we used Grammatical Inference (GI...
Piedachu Peris, Damián López, Marcel...
ALIFE
1999
13 years 6 months ago
An Approach to Biological Computation: Unicellular Core-Memory Creatures Evolved Using Genetic Algorithms
A novel machine language genetic programming system that uses one-dimensional core memories is proposed and simulated. The core is compared to a biochemical reaction space, and in ...
Hikeaki Suzuki
BMCBI
2005
141views more  BMCBI 2005»
13 years 6 months ago
A method for the prediction of GPCRs coupling specificity to G-proteins using refined profile Hidden Markov Models
Background: G- Protein coupled receptors (GPCRs) comprise the largest group of eukaryotic cell surface receptors with great pharmacological interest. A broad range of native ligan...
Nikolaos G. Sgourakis, Pantelis G. Bagos, Panagiot...
ERSHOV
2009
Springer
14 years 25 days ago
Simulation of Kohn's Molecular Interaction Maps through Translation into Stochastic CLS+
Kohn’s Molecular Interaction Maps (MIMs) are a graphical notation for describing bioregulatory networks at the molecular level. Even if the meaning of Kohn’s diagrams can be of...
Roberto Barbuti, Daniela Lepri, Andrea Maggiolo-Sc...