Litcius/Paper detail

The SCF Complex Is Essential to Maintain Genome and Chromosome Stability

Laura L. Thompson, Kailee A. Rutherford, Chloe C. Lepage, Kirk J. McManus

2021International Journal of Molecular Sciences45 citationsDOIOpen Access PDF

Abstract

The SKP1, CUL1, F-box protein (SCF) complex encompasses a group of 69 SCF E3 ubiquitin ligase complexes that primarily modify protein substrates with poly-ubiquitin chains to target them for proteasomal degradation. These SCF complexes are distinguishable by variable F-box proteins, which determine substrate specificity. Although the function(s) of each individual SCF complex remain largely unknown, those that have been characterized regulate a wide array of cellular processes, including gene transcription and the cell cycle. In this regard, the SCF complex regulates transcription factors that modulate cell signaling and ensures timely degradation of primary cell cycle regulators for accurate replication and segregation of genetic material. SCF complex members are aberrantly expressed in a myriad of cancer types, with altered expression or function of the invariable core SCF components expected to have a greater impact on cancer pathogenesis than that of the F-box proteins. Accordingly, this review describes the normal roles that various SCF complexes have in maintaining genome stability before discussing the impact that aberrant SCF complex expression and/or function have on cancer pathogenesis. Further characterization of the SCF complex functions is essential to identify and develop therapeutic approaches to exploit aberrant SCF complex expression and function.

Topics & Concepts

F-box proteinUbiquitin ligaseCell division control protein 4BiologySkp1UbiquitinTranscription factorCell biologyCell cycleComputational biologyGeneticsGeneUbiquitin and proteasome pathwaysProtein Degradation and InhibitorsHistone Deacetylase Inhibitors Research