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41.
Templates of the membrane potential profiles from lateral (LI) interneurons and motoneurons during glutamate- and N-methyl-D-aspartate (NMDA)-induced fictive locomotion showed pronounced plateau phases. In contrast, crossed caudal (CC) interneurons had a less obvious and steeper plateau region that was followed by a clear notch coinciding with the end of the lateral interneuron plateau phase. These results indicate a significant inhibitory input from LI to CC interneurons. 相似文献
42.
Uwe Thissen Suzan Wopereis Sjoerd AA van den Berg Ivana Bobeldijk Robert Kleemann Teake Kooistra Ko Willems van Dijk Ben van Ommen Age K Smilde 《BMC bioinformatics》2009,10(1):52
Background
In the fields of life sciences, so-called designed studies are used for studying complex biological systems. The data derived from these studies comply with a study design aimed at generating relevant information while diminishing unwanted variation (noise). Knowledge about the study design can be used to decompose the total data into data blocks that are associated with specific effects. Subsequent statistical analysis can be improved by this decomposition if these are applied on selected combinations of effects. 相似文献43.
Marc Hulsman Anouk Mentink Eugene P van Someren Koen J Dechering Jan de Boer Marcel JT Reinders 《BMC bioinformatics》2010,11(1):156
Background
Oligonucleotide arrays have become one of the most widely used high-throughput tools in biology. Due to their sensitivity to experimental conditions, normalization is a crucial step when comparing measurements from these arrays. Normalization is, however, far from a solved problem. Frequently, we encounter datasets with significant technical effects that currently available methods are not able to correct. 相似文献44.
Neurotransmitter receptor trafficking and the regulation of synaptic strength. Traffic 2001:2(7):437–448. 相似文献
45.
Joseph E Aslan Alex M Spencer Cassandra P Loren Jiaqing Pang Heidi C Welch Daniel L Greenberg Owen JT McCarty 《Journal of molecular signaling》2011,6(1):1-6
Background
Blood platelets undergo a carefully regulated change in shape to serve as the primary mediators of hemostasis and thrombosis. These processes manifest through platelet spreading and aggregation and are dependent on platelet actin cytoskeletal changes orchestrated by the Rho GTPase family member Rac1. To elucidate how Rac1 is regulated in platelets, we captured Rac1-interacting proteins from platelets and identified Rac1-associated proteins by mass spectrometry.Findings
Here, we demonstrate that Rac1 captures the Rac guanine nucleotide exchange factor P-Rex1 from platelet lysates. Western blotting experiments confirmed that P-Rex1 is expressed in platelets and associated with Rac1. To investigate the functional role of platelet P-Rex1, platelets from P-Rex1 -/- -deficient mice were treated with platelet agonists or exposed to platelet activating surfaces of fibrinogen, collagen and thrombin. Platelets from P-Rex1 -/- mice responded to platelet agonists and activating surfaces similarly to wild type platelets.Conclusions
These findings suggest that P-Rex1 is not required for Rac1-mediated platelet activation and that the GEF activities of P-Rex1 may be more specific to GPCR chemokine receptor mediated processes in immune cells and tumor cells. 相似文献46.
Nuno Carinhas Vicente Bernal Ana P Teixeira Manuel JT Carrondo Paula M Alves Rui Oliveira 《BMC systems biology》2011,5(1):34
Background
Stoichiometric models constitute the basic framework for fluxome quantification in the realm of metabolic engineering. A recurrent bottleneck, however, is the establishment of consistent stoichiometric models for the synthesis of recombinant proteins or viruses. Although optimization algorithms for in silico metabolic redesign have been developed in the context of genome-scale stoichiometric models for small molecule production, still rudimentary knowledge of how different cellular levels are regulated and phenotypically expressed prevents their full applicability for complex product optimization. 相似文献47.
48.
To get insight into the insertion mechanism of small newly synthesized single-spanning membrane proteins, Pf3 coat protein mutants were constructed with potential glycosylation sites in the N-terminus. Some of these proteins, when synthesized in vitro in the presence of microsomes, became efficiently glycosylated, proving that they insert into the membrane and translocate their N-terminus to the lumenal side. Such Pf3 constructs also insert efficiently into Escherichia coli vesicles and even in pure lipid vesicles, suggesting a common mechanism, which might be spontaneous. Glycosylation was sensitive to changes in the amino acid sequence of the N-terminus, suggesting that it depends on the structure of the protein and/or its positioning with respect to the lipid-water interface. 相似文献
49.
50.
Andrew Yates Cliburn Chan Jessica Strid Simon Moon Robin Callard Andrew JT George Jaroslav Stark 《BMC bioinformatics》2007,8(1):196