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1.
J Theor Biol ; 550: 111222, 2022 10 07.
Artigo em Inglês | MEDLINE | ID: mdl-35843440

RESUMO

BACKGROUND: The cyclic nucleotides cAMP and cGMP inhibit platelet activation. Different platelet signaling modules work together. We develop here a modelling framework to integrate different signaling modules and apply it to platelets. RESULTS: We introduce a novel standardized bilinear coupling mechanism allowing sub model debugging and standardization of coupling with optimal data driven modelling by methods from optimization. Besides cAMP signaling our model considers specific cGMP effects including external stimuli by drugs. Moreover, the output of the cGMP module serves as input for a modular model of VASP phosphorylation and for the activity of cAMP and cGMP pathways in platelets. Experimental data driven modeling allows us to design models with quantitative output. We use the condensed information about involved regulation and system responses for modeling drug effects and obtaining optimal experimental settings. Stepwise further validation of our model is given by direct experimental data. CONCLUSIONS: We present a general framework for model integration using modules and their stimulus responses. We demonstrate it by a multi-modular model for platelet signaling focusing on cGMP and VASP phosphorylation. Moreover, this allows to estimate drug action on any of the inhibitory cyclic nucleotide pathways (cGMP, cAMP) and is supported by experimental data.


Assuntos
Plaquetas , AMP Cíclico , GMP Cíclico , Nucleotídeos Cíclicos , Fosfoproteínas , Fosforilação
2.
Front Bioeng Biotechnol ; 9: 708417, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34790651

RESUMO

Synthetically designed alternative photorespiratory pathways increase the biomass of tobacco and rice plants. Likewise, some in planta-tested synthetic carbon-concentrating cycles (CCCs) hold promise to increase plant biomass while diminishing atmospheric carbon dioxide burden. Taking these individual contributions into account, we hypothesize that the integration of bypasses and CCCs will further increase plant productivity. To test this in silico, we reconstructed a metabolic model by integrating photorespiration and photosynthesis with the synthetically designed alternative pathway 3 (AP3) enzymes and transporters. We calculated fluxes of the native plant system and those of AP3 combined with the inhibition of the glycolate/glycerate transporter by using the YANAsquare package. The activity values corresponding to each enzyme in photosynthesis, photorespiration, and for synthetically designed alternative pathways were estimated. Next, we modeled the effect of the crotonyl-CoA/ethylmalonyl-CoA/hydroxybutyryl-CoA cycle (CETCH), which is a set of natural and synthetically designed enzymes that fix CO2 manifold more than the native Calvin-Benson-Bassham (CBB) cycle. We compared estimated fluxes across various pathways in the native model and under an introduced CETCH cycle. Moreover, we combined CETCH and AP3-w/plgg1RNAi, and calculated the fluxes. We anticipate higher carbon dioxide-harvesting potential in plants with an AP3 bypass and CETCH-AP3 combination. We discuss the in vivo implementation of these strategies for the improvement of C3 plants and in natural high carbon harvesters.

3.
Trends Biotechnol ; 38(4): 354-359, 2020 04.
Artigo em Inglês | MEDLINE | ID: mdl-31959363

RESUMO

Synthetically designed alternative photorespiratory pathways in tobacco and rice plants have paved the way to enhanced plant biomass production. Likewise, some in vitro- and in vivo-tested carbon-concentrating cycles hold promise to increase plant biomass. We hypothesize a further increase in plant productivity if photorespiratory bypasses are integrated with carbon-concentrating cycles in plants.


Assuntos
Dióxido de Carbono/metabolismo , Sequestro de Carbono , Nicotiana/genética , Oryza/genética , Biomassa , Oryza/crescimento & desenvolvimento , Oryza/metabolismo , Fotossíntese , Biologia Sintética , Nicotiana/crescimento & desenvolvimento , Nicotiana/metabolismo
4.
Methods Mol Biol ; 2094: 67-77, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-31797292

RESUMO

Molecular docking enables comprehensive exploration of interactions between chemical moieties and proteins. Modeling and docking approaches are useful to determine the three-dimensional (3D) structure of experimentally uncrystallized proteins and subsequently their interactions with various inhibitors and activators or peptides. Here, we describe a protocol for carrying out molecular modeling and docking of stem cell peptide CLV3p on plant innate immune receptor FLS2.


Assuntos
Proteínas de Arabidopsis/química , Simulação de Acoplamento Molecular/métodos , Peptídeos/química , Proteínas Quinases/química , Sequência de Aminoácidos , Proteínas de Arabidopsis/genética , Bases de Dados Genéticas , Flagelina/química , Flagelina/genética , Modelos Moleculares , Simulação de Acoplamento Molecular/instrumentação , Mutação , Ligação Proteica , Proteínas Quinases/genética , Alinhamento de Sequência , Software
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