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At the same time, the sophistication of techniques for model development and analysis has given rise to a relative compartmentalization of model building and evaluation tasks.
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Different types of cells and tissues may have different sets of the possible cofactors for the functional modification of α-DG, and even in the same tissues there might be possibly differences in relative expression levels and compartmentalization of the LARGE paralogs in the Golgi apparatus.
In addition, in the light of the model structure, the results of parameter sensitivity analysis verifies the relative "freedom" of biomass initial compartmentalization and the high output sensitivity when the substrate (glycerol or methanol) concentration is close to the affinity constant (KGly or KMeth).
Taken together, we have made highly consistent observations in the differential compartmentalization of active and repressive histone modifications relative to the nuclear periphery at the microscopic level and relative to sLADs at the molecular level.
Additionally we present a completely new and clearer statistical analysis showing that the compartmentalization results are significant at all the boundaries, relative to the LFC/Fe boundary.
Relationships between dogs and humans within a community, dog population density, and relative dog-human population ratio are common explanations for such compartmentalization phenomenon [ 16, 17].
More research would be required to establish the relative importance of different sources of Ca2+, and the possible importance of compartmentalization of [Ca2+]i in regulating different plastic properties.
This change was so profound relative to any other treatment that we were unable to discern the subcellular compartmentalization of lysosomes (Additional file 3: Figure S3).
Next, we evaluated whether the observed differential compartmentalization of active histone modifications at the nuclear periphery is consistent with their genome-wide distributions relative to sLADs.
PHB yield was sensitive to photoassimilation capacity, availability of carbon reserves, ATP maintenance, relative photosynthetic activity of B and M, and type of metabolites exchanged in the plasmodesmata, but not sensitive towards compartmentalization. Hence, the compartmentalization issues currently encountered are likely to be kinetic or thermodynamic limitations rather than stoichiometric.
But in recent decades such compartmentalization has disintegrated.
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