Independent education resourceInformation here does not replace care from a qualified health professional.
Peptide Therapy GuideClear peptide education

Educational guide

Cell Cycle | DNA Damage| MedChemExpress

Cell Cycle/DNA Damage Cell Cycle includes many processes necessary for successful self-replication, and consists of DNA synthesis (S) and mitosis (M) phases separated by gap phases in the order G1–S–G2–M. S phase and M phase are usually separated by gap phases

Written by Peptide Therapy Guide Editorial Team
For education only

This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

Cell Cycle/DNA Damage

Cell Cycle includes many processes necessary for successful self-replication, and consists of DNA synthesis (S) and mitosis (M) phases separated by gap phases in the order G1–S–G2–M. S phase and M phase are usually separated by gap phases called G1 and G2, when cell-cycle progression can be regulated by various intracellular and extracellular signals. In order to move from one phase of its life cycle to the next, a cell must pass through numerous checkpoints. At each checkpoint, specialized proteins determine whether the necessary conditions exist. Progression through G1 phase is controlled by pRB proteins, and phosphorylation of pRB proteins by CDKs releases E2F factors, promoting the transition to S phase. The G2/M transition that commits cells to division is a default consequence of initiating the cell cycle at the G1/S transition, many proteins, such Wee1, PLK1 and cdc25, is involved the regulation of this process. The best-understood checkpoints are those activated by DNA damage and problems with DNA replication.

DNA damage response (DDR) is a series of regulatory events including DNA damage, cell-cycle arrest, regulation of DNA replication, and repair or bypass of DNA damage to ensure the maintenance of genomic stability and cell viability. Genome instability arises if cells initiate mitosis when chromosomes are only partially replicated or are damaged by a double-strand DNA break (DSB). To prevent cells with damaged DNA from entering mitosis, ATR inhibits cyclin B/Cdk1 activation by stimulating the Cdk1 inhibitory kinase Wee1 and inhibiting Cdc25C via Chk1, besides, ATM and ATR also initiate DNA repair by phosphorylating several other substrates.

In cancer cells, the cell cycle regulators as well as other elements of the DDR pathway have been found to protect tumor cells from different stresses and to promote tumor progression. Thus, cell cycle proteins that directly regulate cell cycle progression (such as CDKs), as well as checkpoint kinases, Aurora kinases and PLKs, are promising targets in cancer therapy.

[1] Rhind N, et al. Cold Spring Harb Perspect Biol. 2012 Oct; 4(10): a005942.

[2] Duronio RJ, et al. Cold Spring Harb Perspect Biol. 2013 Mar; 5(3): a008904.

[3] Liu W, et al. Mol Cancer. 2017 Mar 14;16(1):60.

[4] Ghelli Luserna di Rora' A, et al. J Hematol Oncol. 2017 Mar 29;10(1):77.

Unfolded Protein Response

ATF6 (11)

ClpP (32)

Deubiquitinase (200)

Eukaryotic Initiation Factor (eIF) (130)

FKBP (86)

HSP (472)

IRE1 (72)

PDI (35)

PERK (185)

DNA Damage

ATM/ATR (115)

Aurora Kinase (225)

Casein Kinase (234)

DNA Alkylator/Crosslinker (279)

DNA Stain (87)

DNA-PK (75)

DNA/RNA Synthesis (2787)

Endonuclease (37)

HMG Family (5)

NEKs (44)

Nucleoside Antimetabolite/Analog (2424)

p97 (34)

PARP (635)

Poly(ADP-ribose) Glycohydrolase (PARG) (27)

RAD51 (46)

SWI/SNF Complex (163)

YB-1 (6)

Zinc Finger Protein (8)

Cell Cycle

Antifolate (146)

APC (19)

CDK (1275)

CDKL (1)

Checkpoint Kinase (Chk) (110)

Cyclin G-associated Kinase (GAK) (26)

Early 2 Factor (E2F) (13)

Folate Receptor (FR) (28)

G-quadruplex (56)

Haspin Kinase (17)

HDAC (877)

HOXA (11)

Kinesin (111)

LIM Kinase (LIMK) (46)

MARK (14)

MASTL (9)

Microphthalmia Associated Transcription Factor (MITF) (6)

Microtubule/Tubulin (959)

Mps1 (47)

PAK (105)

Polo-like Kinase (PLK) (128)

PPAR (721)

ROCK (190)

Separase (2)

Sirtuin (317)

SRPK (13)

STK33 (8)

Telomerase (52)

TOPK (18)

Topoisomerase (805)

Wee1 (75)

Others

Disulfidptosis (12)

Eukaryotic Release Factor (eRF) (2)

Microtubule‐associated serine/threonine kinase (MAST) (2)

Mitosis (113)

TLK (3)

Related Compound Screening Libraries (1)

Cell Cycle/DNA Damage Compound Library

Compound Customization

Connected reading

Helpful context for this guide

Source-derived material selected through this article’s indexed topics.

Research context

Read sources and limitations before applying a claim.

Evidence from Research

While more large-scale human trials are needed, several studies highlight Shilajit's protective effects: In Vitro Studies• Cells treated with fulvic acid show reduced DNA strand breaks• Markers of oxidative stress decline when exposed to Shilajit extracts Animal Studies• Rodents supplemented with Shilajit exhibit less DNA oxidation in liver tissues• Enhanced activity of superoxide dismutase (SOD) and glutathione peroxidase, two key antioxidant enzymes Clinical Observations• Preliminary trials suggest better energy levels and reduced markers of oxidative stress in healthy adults• Anecdotal reports of improved recovery after environmental toxin exposure

Source: ubiehealth.com ↗

Research Highlights

Several peer-reviewed studies illustrate NMN's impact on DNA repair: Animal Models Mice supplemented with NMN showed improved DNA repair markers in liver and muscle tissues. Young and aged mice both benefited, though aged mice saw the most dramatic improvements in sirtuin activity. Cell Culture Studies Human cells treated with NMN exhibited faster resolution of DNA strand breaks after exposure to UV light or oxidative stress. Increased NAD+ directly correlated with higher SIRT6 recruitment to damage sites. Early Human Trials Phase I studies report that daily NMN supplementation safely raises blood NAD+ levels by 30–70%. Participants displayed improved insulin sensitivity and markers of vascular health, indirectly supporting cellular repair processes. While long-term, large-scale human trials are still underway, the consistency across models has convinced many clinicians of NMN's promise in bolstering DNA repair.

Source: ubiehealth.com ↗
P

About the author

Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

View all articles →