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Recent "signalling" articles

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BowTieBuilder: modeling signal transduction pathways
Jochen Supper et al.
BMC Systems Biology 3 (1), 67 (30 Jun 2009)
Posted by sailu and 1 other to signalling on Thu Jul 02 2009 at 15:48 UTC | info | related
 
Dynamic Signaling Network for the Specification of Embryonic Pancreas and Liver Progenitors -- Wandzioch and Zaret 324 (5935): 1707 -- Science Signaling
stke.sciencemag.org
Posted by sailu to signalling on Wed Jul 01 2009 at 02:44 UTC | info | related
 
Defining a modular signalling network from the fly interactome.
Anais Baudot et al.
BMC Systems Biology 2 (1), 45 (19 May 2008)
Posted by like and 1 other to fly signalling on Tue Jun 23 2009 at 11:08 UTC | info | related
 
Differential Modification of Interferon Regulatory Factor 3 following Virus Particle Entry
Differential modification of interferon regulatory factor 3 following virus particle entry
Ryan S Noyce, Susan E Collins, and Karen L Mossman
The Journal of Virology 83 (9), 4013-22 (11 Feb 2009)
Posted by aforero and 2 others to signalling NDV IRF3 on Fri Jun 19 2009 at 18:52 UTC | info | related
 
STING is an endoplasmic reticulum adaptor that facilitates innate immune signalling.
Hiroki Ishikawa and Glen N Barber
Nature 455 (7213), 674-8 (24 Aug 2008)
Posted by aforero and 2 others to signalling ER on Fri Jun 19 2009 at 18:44 UTC | info | related
 
Differential subcellular membrane recruitment of Src may specify its downstream signalling
www.sciencedirect.com
Posted by aforero to signalling Src on Fri Jun 19 2009 at 17:08 UTC | info | related
 
CD39, NTPDase 1, is attached to the plasma membrane by two transmembrane domains. Why?
Alison Grinthal and Guido Guidotti
Purinergic signalling 2 (2), 391-8 (Jun 2006)
Posted by hejinxia and 1 other with 1 comment to 2 signalling purinergic on Fri Jun 19 2009 at 02:37 UTC | info | related
 
The New Résumé: Dumb and Dumber
Porter Jane
WSJ.com
Qualifications droped from CV in order to get a job
 
Interactions of glutamate and dopamine in a computational model of the striatum.
R Kötter and J Wickens
Journal of computational neuroscience 2 (3), 195-214 (Sep 1995)
A network model of simplified striatal principal neurons with mutual inhibition was used to investigate possible interactions between cortical glutamatergic and nigral dopaminergic afferents in the neostriatum. Glutamatergic and dopaminergic inputs were represented by an excitatory synaptic conductance and a slow membrane potassium conductance, respectively. Neuronal activity in the model was characterized by episodes of increased action potential firing rates of variable duration and frequency. Autocorrelation histograms constructed from the action potential activity of striatal model neurons showed that reducing peak excitatory conductance had the effect of increasing interspike intervals. On the other hand, the maximum value of the dopamine-sensitive potassium conductance was inversely related to the duration of firing episodes and the maximal firing rates. A smaller potassium conductance restored normal firing rates in the most active neurons at the expense of a larger proportion of neurons showing reduced activity. Thus, a homogeneous network with mutual inhibition can produce equally complex dynamics as have been proposed to occur in a striatal network with two neuron populations that are oppositely regulated by dopamine. Even without mutual inhibition it appears that increased dopamine concentrations could partially compensate for the effects of reduced glutamatergic input in individual neurons.
Posted by mattions to signalling on Wed May 13 2009 at 08:44 UTC | info | related
 
Emergent Properties of Networks of Biological Signaling Pathways
Science 283 (5400), 381 (1999)
10.1126/science.283.5400.381
Posted by mattions to signalling on Wed May 13 2009 at 08:44 UTC | info | related

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