Aggrephagy

Summary
Organism
Homo sapiens (human)
Reactome
R-HSA-9646399
PubChem
R-HSA-9646399
Description
  • When the capacity of the proteosome to degrade misfolded proteins is limited, the alternate route to eliminate denatured proteins is via forming aggresomes - a process known as aggrephagy. Aggresome formation starts with ubiquitination of misfolded proteins following transport to the microtubule-organizing center (MTOC) with the help of dynein motor proteins. At the MTOC the cargo is encapsulated with intermediate filament proteins to result in the aggresome. Subsequently, this aggresome recruits chaperones that result in its autophagic elimination (Garcia Mata R et al. 2002).
Click on a node on the pathway to see its details. Glycoproteins are marked with a glycoprotein icon in their name.
Displaying entries 1 - 10 of 27 in total
UniProt ID Protein Name Gene Symbol Pathway Viewer
A6NNZ2 Tubulin beta 8B
  • TUBB8B
view
O14576 Cytoplasmic dynein 1 intermediate chain 1
  • DNCI1
  • DNCIC1
  • DYNC1I1
view
O43237 Cytoplasmic dynein 1 light intermediate chain 2
  • DNCLI2
  • DYNC1LI2
  • LIC2
view
O95613 Pericentrin
  • KIAA0402
  • PCNT
  • PCNT2
view
P04350 Tubulin beta-4A chain
  • TUBB4
  • TUBB4A
  • TUBB5
view
P07900 Heat shock protein HSP 90-alpha
  • HSP90A
  • HSP90AA1
  • HSPC1
  • HSPCA
view
P08670 Vimentin
  • VIM
view
P13569 Cystic fibrosis transmembrane conductance regulator
  • ABCC7
  • CFTR
view
P55072 Transitional endoplasmic reticulum ATPase
  • HEL-220
  • HEL-S-70
  • VCP
view
P62979 Ubiquitin-ribosomal protein eS31 fusion protein
  • RPS27A
  • UBA80
  • UBCEP1
view

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GlyCosmos is a member of the GlySpace Alliance together with GlyGen and Glycomics@ExPASy.

Acknowledgements

Supported by JST NBDC Grant Number JPMJND2204

Partly supported by NIH Common Fund Grant #1U01GM125267-01


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Last updated: April 6, 2026