2015
DOI: 10.1016/j.bbamem.2015.08.002
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Disordered regions in transmembrane proteins

Abstract: The functions of transmembrane proteins in living cells are widespread; they range from various transport processes to energy production, from cell-cell adhesion to communication. Structurally, they are highly ordered in their membrane-spanning regions, but may contain disordered regions in the cytosolic and extra-cytosolic parts. In this study, we have investigated the disordered regions in transmembrane proteins by a stringent definition of disordered residues on the currently available largest experimental … Show more

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Cited by 30 publications
(16 citation statements)
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“…Notably, in PSD proteins, IDRs are often paired with other structural elements, in contrast to the full proteome, where this association is much less frequent. Although the common presence of TM segments and IDRs shows an exception (also see [ 58 ]), other combinations between IDRs and ordered segments are significantly higher. By exhibiting a diverse range of structural segments as binding regions PSD proteins likely involved in a wide range of different types of interactions to maintain the PPI network of the PSD.…”
Section: Discussionmentioning
confidence: 99%
“…Notably, in PSD proteins, IDRs are often paired with other structural elements, in contrast to the full proteome, where this association is much less frequent. Although the common presence of TM segments and IDRs shows an exception (also see [ 58 ]), other combinations between IDRs and ordered segments are significantly higher. By exhibiting a diverse range of structural segments as binding regions PSD proteins likely involved in a wide range of different types of interactions to maintain the PPI network of the PSD.…”
Section: Discussionmentioning
confidence: 99%
“…Accuracy of disordered prediction methods is limited in TM proteins [29]. Although extracellular disordered regions are depleted in TM proteins [29], they are definitely present and one important function of them is to serve sites for glycosylation [30] mediating sorting.…”
Section: Figure 3: Sequence Alignment Of the O-glycosylated Linker Rementioning
confidence: 99%
“…indicates the number of The motif details page for DOC_CYCLIN_1. This page contains all the manually annotated details for the DOC_CYCLIN_1 motif, as well as the biological background summarized from the scientific literature, including links to the primary literature and to external resources such as Pubmed (NCBI Resource Coordinators, 2017), the Gene Ontology (GO; Gene Ontology Consortium, 2017), PDB (Berman et al, 2000), and more. experimental evidences associated with the annotation.…”
Section: Introductionmentioning
confidence: 99%