| Literature DB >> 27402801 |
Ajeena Ramanujan1, Swati Tiwari2.
Abstract
The ubiquitin (Ub) ligase anaphase promoting complex/cyclosome (APC/C) and the tumour suppressor retinoblastoma protein (pRB) play key roles in cell cycle regulation. APC/C is a critical regulator of mitosis and G1-phase of the cell cycle whereas pRB keeps a check on proliferation by inhibiting transition to the S-phase. APC/C and pRB interact with each other via the co-activator of APC/C, FZR1, providing an alternative pathway of regulation of G1 to S transition by pRB using a post-translational mechanism. Both pRB and FZR1 have complex roles and are implicated not only in regulation of cell proliferation but also in differentiation, quiescence, apoptosis, maintenance of chromosomal integrity and metabolism. Both are also targeted by transforming viruses. We discuss recent advances in our understanding of the involvement of APC/C and pRB in cell cycle based decisions and how these insights will be useful for development of anti-cancer and anti-viral drugs.Entities:
Keywords: FZR1; LxCxE; anaphase promoting complex/cyclosome; cell cycle; human papilloma virus; retinoblastoma
Mesh:
Substances:
Year: 2016 PMID: 27402801 PMCID: PMC5025812 DOI: 10.1042/BSR20160152
Source DB: PubMed Journal: Biosci Rep ISSN: 0144-8463 Impact factor: 3.840
Figure 1Regulation of cell cycle by the SCF and APC/C E3 ligases
Schematic diagrams of the modular structure of the SCF (A) and APC/C (B) showing the relative positions of various subunits. The stages of the cell cycle where activities of these complexes regulates key events are shown in (C) along with some of the key substrates. The activities of two APC/C assemblies (APC/CCDC20 and APC/CFZR1) are regulated in opposite manner by phosphorylation resulting their manifestation at different stages (D). APC/CCDC20 is activated upon phosphorylation by the mitotic cyclin/CDK complex but its activity is kept in check by the SAC. Once SAC is satisfied, APC/CCDC20 targets mitotic cyclins resulting in decrease in kinase activity thus inactivating APC/CCDC20. At the same time, activation of the phosphatase Cdc14 dephosphorylate FZR1 resulting in activation of APC/CFZR1.
Substrates of APC/CFZR1
| G1 | Mitosis | Reference |
|---|---|---|
| FZR1 | [ | |
| SKP2 | [ | |
| Cyclin B1 | Cyclin B1 | [ |
| FoxM1 | [ | |
| CDCA3 | [ | |
| Anillin | [ | |
| Nek2 | [ | |
| B99 | [ | |
| E2F1 | [ | |
| TOME1 | [ | |
| Geminin | Geminin | [ |
| Aurora B | [ | |
| CDC6 | [ | |
| CKAP2 | [ | |
| CDC20 | [ | |
| Cyclin A | [ | |
| ETS2 | [ | |
| Claspin | [ | |
| Id2 | [ | |
| PLK1 | [ | |
| Rcs1 | [ | |
| Securin | [ | |
| Sgo1 | [ | |
| SnoN | [ | |
| Tpx2 | [ | |
| Xkid | [ | |
| CLB2 | [ | |
| CDC5 | [ | |
| HSL1 | [ | |
| CDC25A | [ | |
| NDD1 | [ | |
| CtIP | [ |
Consequences of FZR1 depletion in cells and model animals
| Cells/model | Effect of FZR1 depletion | Reference |
|---|---|---|
|
| ||
| Fission yeast | [ | |
| Fission yeast | Meiotic mutant with aberrant asci having one or two mature spores | [ |
| Budding yeast gene replacement | Premature exit from meiotic prophase I | [ |
| Budding yeast | Inhibition of mitotic cyclin degradation and inappropriately induced DNA replication | [ |
|
| ||
| | Increased proportion of cells in S-phase, apoptosis | [ |
| | Loss of cell cycle arrest, increased generation time | [ |
| Lentiviral RNAi mediated KO of | Early onset of DNA replication | [ |
| Human fibroblast cells | Premature senescence | [ |
| MEFs from | Poor proliferation, premature senescence | [ |
| | Increase in half-life of SKP2 | [ |
| | Sub-G1 DNA content | [ |
|
| ||
| | Premature termination of floral shoots, disruption of cell cycle progression, defects in | [ |
|
| ||
| Loss of function | Reentry into the cell cycle following embryonic cycle 16 thereby bypassing the normal G1 arrest | [ |
| | Changes in size and morphology of synapses, locomotion defects | [ |
|
| ||
| RNAi mediated inactivation of | Sterility, aberrant germ cell proliferation | [ |
|
| ||
| Conditional knockout mouse | Embryonic lethality at E9.5–E10.5 | [ |
| | Increased susceptibility to spontaneous tumours | [ |
| | Embryonic lethality, lack of endoreduplication, placentation defects | [ |
| Male | Abnormal proliferation of spermatogonia, infertility, failure of early meiotic prophase I in male germ cells | [ |
| Female | Premature onset of ovarian failure, subfertile females, defects in early meiotic prophase I | [ |
Figure 2Different mechanisms of G1-S regulation by pRB
Transcriptional and post-translational regulation of G1-S transition by pRB-E2F and pRB-APC/CFZR1 complexes. The phosphorylation status of pRB is indicated by black solid balls, with numbers of balls reflecting hypo- or hyper phosphorylation of pRB (not actual number of phosphorylation sites) (A). Domain organization of pRB showing phosphorylation sites and regions of interactions with various cellular proteins. Numbers show amino acid positions (B).
Figure 3Domain organization of viral proteins
LxCxE motif is indicated with solid black ball. Numbers indicate amino acids (A). Mechanisms of displacement of E2F from pRB by LxCxE containing viral proteins (B).
Effects of mutations in the LxCxE motif of cellular proteins on their function and interaction with pRB
| pRB binding protein | LxCxE mutation | Effect on binding to pRB | Effect on function | References |
|---|---|---|---|---|
| RBP-1 | E to K | Retains binding to pRB | ND | [ |
| HBP-1 | C to G in both LxCxE and LxCxE | No binding to pRB | Loss of transcriptional repression by HBPl | [ |
| CtIP | Deletion | No binding to pRB | ND | [ |
| HDAC-1 | Deletion | No binding to pRB | Inhibition of pRB repressive function | [ |
| BRG-1 | Mutation in pRB LxCxE cleft | Retains binding to pRB | ND | [ |
| EID-1 | Deletion | No binding to pRB | No effect | [ |
| Gankyrin | E to A | No binding to pRB | Inhibition of phosphorylation and degradation of pRB | [ |
| RFC-1 | C to G, E to K | No binding to pRB | Loss of RFC function in promoting cell survival after DNA damage | [ |
| BRCA-1 | RXRXH | Retains binding to pRB | Altered tumour suppressor activity of BRCA1 | [ |
| ASK-1 | LKCFE to VRCFD | No binding to pRB | Altered ASK-1 activity in induction of apoptosis | [ |
| Cyclin D1, D2 | C to G, E to K | Profoundly diminished binding to pRB | Partial abrogation of pRB-induced growth arrest and senescence | [ |
| RBBP-9 | L to Q | No binding to pRB | ND | [ |
| NuMA | C to G, E to K | No binding to pRB | Abnormal organization of spindle microtubules | [ |