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Structural proteomics aims to discover most macromolecular complexes and characterize their three-dimensional structures and functional mechanisms in space and time.
Conversely, most macromolecular complexes with the exception of the nucleosome and ribosome contain at least one subunit that appears to be stable on its own.
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This approach provides an alternative, largely simplified and easier to use affinity grid that directly works with most native macromolecular complexes with established antibodies, and enables cryo-EM studies of native samples directly from cell cultures.
We suspected that these intranuclear particles were nucleosomes, since these particles were plentiful and nucleosomes are the most abundant macromolecular complexes in nuclei.
Most proteins form macromolecular complexes to perform their biological functions.
The replacement of components of a multi-subunit complex in order to regulate biological function has been found to be a feature of some macromolecular complexes, the most striking example being histones as part of the histone octamer [ 32].
10.7554/eLife.03023.019 Figure 5. Subunits of macromolecular complexes accounts for most of the attenuation.
DOI: http://dx.doi.org/10.7554/eLife.03023.020 10.7554/eLiFigure23.021 Figure 5 figure supplement 1. Subunits of macromolecular complexes accounts for most of the attenuation.
Because the centrosome nucleates microtubules and controls microtubule numbers and lengths it directs most microtubule-related functions including transport of macromolecular complexes, positioning of cell organelles, cell motility, cell shape, polarity, and segregation of chromosomes during cell division.
For instance, the most dosage-sensitive genes are those involved in macromolecular complexes, transcription regulation, and signal transduction pathways, whereas over- or under-expression of "other classes" of genes may have limited fitness effects (Birchler 2012).
Components of macromolecular complexes, such as the ribosome and proteasome are among the most highly enriched terms, which is expected since these proteins need to be produced in stoichiometric amounts and are therefore likely to be coregulated.
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