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n/a Ensembl ENSG00000152291 n/a UniProt O43493 n/a RefSeq (mRNA) NM_006464 NM_001206840 NM_001206841 NM_001206844 NM_001368095 NM_001368096 n/a RefSeq (protein) NP_001193769 NP_001193770 NP_001193773 NP_006455 NP_001355024 NP_001355025 n/a Location (UCSC) Chr 2: 85.32 – 85.33 Mb n/a PubMed search n/a Wikidata View/Edit Human Trans-Golgi network integral membrane protein 2 is a protein that ...
Protein targeting or protein sorting is the biological mechanism by which proteins are transported to their appropriate destinations within or outside the cell. [ 1 ] [ 2 ] [ note 1 ] Proteins can be targeted to the inner space of an organelle , different intracellular membranes , the plasma membrane , or to the exterior of the cell via secretion .
This gene belongs to a group of vacuolar protein sorting (VPS) genes. The encoded protein is a component of a large multimeric complex, termed the retromer complex, involved in retrograde transport of proteins from endosomes to the trans-Golgi network. The close structural similarity between the yeast and human proteins that make up this ...
The golgins are a family of proteins, of which the protein encoded by this gene is a member, that are localized to the Golgi. This protein has been postulated to play a role in Rab6-regulated membrane-tethering events in the Golgi apparatus. Alternative splice variants have been described but their full-length nature has not been determined. [6]
Molecules are also transported to endosomes from the trans Golgi network and either continue to lysosomes or recycle back to the Golgi apparatus. Endosomes can be classified as early, sorting, or late depending on their stage post internalization. [1] Endosomes represent a major sorting compartment of the endomembrane system in cells. [2]
Once appropriately marked with the M6P targeting signal, these proteins are moved to the trans-Golgi network. There, the M6P moiety is recognized and bound by mannose 6-phosphate receptor (MPR) proteins at pH 6.5–6.7. [1] The M6P-tagged lysosomal enzymes are shipped to the late endosomes via vesicular transport. [1]
The endoplasmic-reticulum–Golgi intermediate compartment (ERGIC) is an organelle in eukaryotic cells. This compartment mediates transport between the endoplasmic reticulum (ER) and Golgi complex, facilitating the sorting of cargo. [1] The cluster was first identified in 1988 using an antibody to the protein that has since been named ERGIC-53. [2]
The yeast protein forms a subunit of the tetrameric Golgi-associated retrograde protein complex that is involved in vesicle trafficking from both early and late endosomes, back to the trans-Golgi network. This gene is located on chromosome 6 in a head-to-head orientation with the gene encoding ribosomal protein S18. [6]