135 Results for "

ATR

" in MedChemExpress (MCE) Product Catalog:
Products (135)

135 Results for "ATR" in MCE Product Catalog:

  • Isoforms Recommended:
  • Targets Recommended:
  • Recombinant Proteins Recommended:
Cat. No.: HY-W766548
Synonyms: 5-Fluorouracil 2'-deoxyriboside-13C,15N2
Floxuridine- 13C, 15N2 (5-Fluorouracil 2'-deoxyriboside- 13C, 15N2) is the 13C- and 15N-labeled labeled Floxuridine (HY-B0097). Floxuridine (5-Fluorouracil 2'-deoxyriboside) is a pyrimidine analog and known as an oncology antimetabolite. Floxuridine inhibits Poly(ADP-Ribose) polymerase and induces DNA damage by activating the ATM and ATR checkpoint signaling pathways in vitro. Floxuridine is a extreamly potent inhibitor for S. aureus infection and induces cell apoptosis . Floxuridine has antiviral effects against HSV and CMV .
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Cat. No.: HY-112108D
Synonyms: COS (MW 2000)
Chitosan oligosaccharide (MW 2000) is a natural oligomer derived from chitosan, with a molecular weight of 2000 Da. Chitosan oligosaccharide (MW 2000∼3000 Da) activates the P53, MAPK and NF-κB signaling pathways. As an ideal immunopotentiator, chitosan oligosaccharide is mainly used as a feed additive in aquaculture .
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Cat. No.: HY-N6954R
CAS No.: 76996-27-5
Garcinone C (Standard) is the analytical standard of Garcinone C. This product is intended for research and analytical applications. Garcinone C, a xanthone derivative, is a natural compound extracted from Garcinia oblongifolia that is used as an anti-inflammatory, astringency and granulation-promoting medicine, and has potential cytotoxic effects on certain cancers. Garcinone C stimulates the expression levels of ATR and 4E-BP1, arrests the cell cycle, inhibits cell viability of the human Nasopharyngeal carcinoma (NPC) cell lines CNE1, CNE2, HK1 and HONE1 in a time‑ and dose‑dependent manner through inhibition of Hedgehog signaling pathway. Garcinone C is orally active .
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Cat. No.: HY-181035
Target:  

PROTACs CDK

Research Areas:  

Cancer

DN1679 is a potent, selective and orally active CRBN-dependent CDK12/13 PROTAC dual degrader. DN1679 shows DC50 of 8.8/9.8 nM (MDA-MB-231), 5.1/6.4 nM (MDA-MB-157) and 17.2/15.8 nM (MDA-MB-468) for CDK12/13. DN1679 can downregulate DNA damage response gene mRNA levels, such as ATM, ATR, BRCA1 and RAD51. DN1679 demonstrates a potent synergistic anti-tumor effect companied with Olaparib (HY-10162). DN1679 can be used for research of triple-negative breast cance .
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Cat. No.: HY-164496
CAS No.: 1161826-19-2
Target:  

DNA/RNA Synthesis

Research Areas:  

Neurological Disease Cancer

KL-50 is an orally active N3-(2-fluoroethyl) imidazotetrazine DNA alkylating agent with selectivity for MGMT-deficient cells. KL-50 introduces a 2-fluoroethyl group at the O6 position of guanine, forming O6-(2-fluoroethyl) guanine (O6FEtG) lesions and further generating DNA interstrand crosslinks (ICLs). KL-50 induces DNA double-strand breaks, activates ATR-CHK1 and ATM-CHK2 DNA damage responses, and causes cell cycle arrest and micronucleus formation. KL-50 can be used for glioblastoma and DNA damage response research .
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Cat. No.: HY-171124
Synonyms: AZD9592
Tilatamig samrotecan (AZD9592) is an anti-EGFR/c-MET antibody-drug conjugate (ADC). Tilatamig samrotecan consists of an anti-EGFR/c-MET antibody with the drug-linker conjugate being AZ14170133 (HY-145399) (a topoisomerase I (TOP1i) inhibitor payload). Tilatamig samrotecan induces multiple DNA damage response pathway markers (like ATM, ATR, γH2AX). Tilatamig samrotecan selectively binds to EGFR and c-MET, delivering the cytotoxic payload. Tilatamig samrotecan exerts anti-tumor activity in vivo. Tilatamig samrotecan can be used for non-small cell lung cancer (NSCLC) and head and neck squamous cell carcinoma (HNSCC) research .
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Cat. No.: HY-173147
Target:  

CDK

Research Areas:  

Cancer

CDK2-IN-42 (Compound H63) is a CDK12 inhibitor with an IC50 value of 10 nM. CDK2-IN-42 has anti-ESCC (Esophageal Squamous Cell Carcinoma) cell activity. It can block transcriptional elongation, downregulate the core genes in the G1 phase to induce cell cycle arrest, and alter the CDK12-ATM/ATR-CHEK1/CHEK2 signaling axis, resulting in DNA damage. CDK2-IN-42 can effectively inhibit tumor growth in a xenograft mouse model of human ESCC KYSE150. CDK2-IN-42 holds great promise for research in the field of cancer .
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Cat. No.: HY-13323B
CAS No.: 2101314-20-7
CX-5461 hydrochloride is a selective, orally active RNA polymerase I inhibitor. CX-5461 hydrochloride disrupts the formation of the SL1-rDNA complex, thereby blocking the transcription initiation of ribosomal RNA without altering the activity of RNA polymerase II, DNA replication, or protein translation processes. CX-5461 hydrochloride upregulates the expression of p21, MDM2, Sestrin1/2, and phosphorylated AMPKα, and reduces the level of phosphorylated Akt. CX-5461 hydrochloride induces G2/G2/M cell cycle arrest, Autophagy, Apoptosis, and cellular senescence, and activates CHK1, CHK2, and RPA. CX-5461 hydrochloride can be used in research related to osteosarcoma, cervical cancer, hematologic malignancies, high-grade serous ovarian cancer, and solid tumors .
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Cat. No.: HY-13323R
CAS No.: 1138549-36-6
CX-5461 (Standard) is the analytical standard of CX-5461 (HY-13323). This product is intended for research and analytical applications. CX-5461 is a selective, orally active RNA polymerase I inhibitor. CX-5461 disrupts the formation of the SL1-rDNA complex, thereby blocking the transcription initiation of ribosomal RNA without altering the activity of RNA polymerase II, DNA replication, or protein translation processes. CX-5461 upregulates the expression of p21, MDM2, Sestrin1/2, and phosphorylated AMPKα, and reduces the level of phosphorylated Akt. CX-5461 induces G2/G2/M cell cycle arrest, Autophagy, Apoptosis, and cellular senescence, and activates CHK1, CHK2, and RPA. CX-5461 can be used in research related to osteosarcoma, cervical cancer, hematologic malignancies, high-grade serous ovarian cancer, and solid tumors .
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Cat. No.: HY-L264
1,544 compounds

DNA damage response (DDR) is a fundamental mechanism for maintaining genomic stability. When DNA damage occurs, such as single- or double-strand breaks or replication fork stalling, cells rely on key proteins including ATM, ATR, PARP, and DNA-PK to sense the damage and transmit signals, thereby regulating DNA repair, cell-cycle arrest, and cell death. Inhibition of specific DNA repair or checkpoint pathways can prevent tumor cells from effectively repairing accumulated DNA damage, ultimately leading to tumor cell death.

MCE DNA Damage Repair Inhibitor Library contains 1,544 compounds, focusing on key nodes involved in DNA damage response and DNA repair. The library covers multiple DNA repair and cell-cycle checkpoint pathways, providing a systematic compound screening tool for research on precision oncology, synthetic lethality, drug resistance mechanisms, and chemo- or radiosensitization.

Cat. No.: HY-155219
CAS No.: 2379556-15-5
TH9028 is an inhibitor of MTHFD1, MTHFD2 and MTHFD2L, with IC50 values of 0.5 nM, 11 nM and 27 nM, respectively. TH9028 reduces replication fork speed, induces replication stress, triggers S-phase arrest, initiates apoptosis, impairs thymidine production, and causes erroneous uracil incorporation into DNA. TH9028 can be used in research related to acute myeloid leukemia .
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Cat. No.: HY-P77226
Purity:  ≥ 90%, as determined by reducing SDS-PAGE.
Synonyms: ANTXR1; FLJ10601; ANTXR Cell Adhesion Molecule 1; Tumor Endothelial Marker 8 Precursor; Anthrax Toxin Receptor 1; Anthrax Toxin Receptor; TEM8; ANTXR1 Protein; ATR; 2310008J16Rik; Tumor Endothelial Marker 8; 2810405N18Rik; FLJ21776; GAPO
Species:  
Human
Source:  
HEK293
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Cat. No.: HY-181786
CAS No.: 3104731-13-4
Target:  

ATM/ATR

Research Areas:  

Cancer

ATM-IN-13 (A36) is an orally active, selective ATM kinase inhibitor with a human IC50 of 0.3 nM. ATM-IN-13 blocks the ATM-mediated DNA double-strand break repair signaling pathway, reduces the phosphorylation levels of ATM and p53, and inhibits ATM-dependent DNA damage response. ATM-IN-13 can be used in the research of colorectal cancer .
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Cat. No.: HY-L004
3,522 compounds

DNA is prone to numerous forms of damage that can injure cells and impair fitness. Cells have developed an array of mechanisms to repair these injuries. Proliferating cells are especially vulnerable to DNA damage due to the added demands of cellular growth and division. Cell cycle checkpoints represent integral components of DNA repair that coordinate cooperation between the machinery of the cell cycle and several biochemical pathways that respond to damage and restore DNA structure. By delaying progression through the cell cycle, checkpoints provide more time for repair before the critical phases of DNA replication, when the genome is replicated, and of mitosis, when the genome is segregated. Loss or attenuation of checkpoint function may increase spontaneous and induced gene mutations and chromosomal aberrations by reducing the efficiency of DNA repair.

MCE owns a unique collection of 3,522 cell cycle/DNA damage-related compounds which can be used in the research of the same.

Cat. No.: HY-149213
CAS No.: 4734-59-2
Purity:  99.20%
Synonyms: J54; J3-54
Research Areas:  

Cancer

LSD1/TLK1-IN-1 is an orally active LSD1, TLK1, TLK2, TTK inhibitor with an LSD1 IC50 of 0.247 μM. LSD1/TLK1-IN-1 suppresses phosphorylation of Nek1 at T141 and Rad9 at S328, abrogates the TLK1>Nek1>ATR>Chk1 axis, protects H3K4me1/2 from demethylation, and does not affect LSD2, MAO-A, or MAO-B. LSD1/TLK1-IN-1 induces apoptosis, bypasses cell-cycle arrest, suppresses tumor growth, downregulates PD-L1 expression, enhances T-cell killing response, inhibits gastric cancer cell proliferation. LSD1/TLK1-IN-1 can be used for the research of prostate cancer and gastric cancer .
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