Pik3cg-flox Mouse
Common Name
Pik3cg-flox
제품 ID
S-CKO-10249
Backgroud
C57BL/6NCya
품종 계통계통 ID
CKOCMP-30955-Pik3cg-B6N-VA
상태
이 마우스 계통을 논문에서 사용할 경우, “Pik3cg-flox Mouse (카탈로그 번호 S-CKO-10249)은 Cyagen에서 구입하였습니다.”라고 명시해 주시기 바랍니다.
구매 가능한 제품 종류
연령
Genotype
성별
수량
표준 제공 조건은 최소 3마리의 이형접합(heterozygous) 보균자를 보장합니다. 동형접합(homozygous) 보균자 및/또는 특정 성별에 대한 브리딩 서비스도 제공됩니다.
기본 정보
품종 계통
Pik3cg-flox
품종 계통계통 ID
CKOCMP-30955-Pik3cg-B6N-VA
유전자명
제품 ID
S-CKO-10249
유전자 별칭
PI3Kgamma, p110gamma, p120-PI3K, 5830428L06Rik
배경
C57BL/6NCya
NCBI ID
변형 내용
Conditional knockout
염색체
Chr 12
Phenotype
Datasheet
적용 분야
--
품종 계통 설명
Ensembl 전사체 ID
ENSMUST00000053215
NCBI 전사체 ID
NM_001146200
타겟 영역
Exon 3~4
유효 영역 크기
~0.9 kb
유전자 연구 개요
Pik3cg, encoding phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit γ (Pi3kγ), is a key component in the phosphoinositide-3-kinase (PI3K) signaling pathway. This pathway is involved in various cellular functions such as cell growth, survival, and metabolism [3,4,5,6,7]. Genetic models, like KO or CKO mouse models, are valuable for studying Pik3cg's function in different biological contexts.
In septic myocardial injury, Pik3cg activates NLRP3 inflammasomes, promoting pyroptosis. Inhibition of Pik3cg by siRNA or the inhibitor AS-604850 reversed the pyroptosis-related changes induced by cecal ligation and puncture in mice [1]. In acute leukemia, a high-risk subset shows a selective dependency on the PI3Kγ complex involving Pik3cg. The selective PI3Kγ inhibitor eganelisib, alone or combined with cytarabine, is effective in treating leukemia [2]. In metastatic prostate cancer, Pik3cg is highly expressed, and its pharmacologic inhibition blocks tumor cell growth, reverses epithelial-mesenchymal transition, and reduces metastasis [3]. In claudin-low breast cancer, targeting Pik3cg enhances the growth-inhibitory and apoptosis-promoting effects of paclitaxel [4]. In acute myeloid leukemia, suppression of the PIK3CG-PIK3R5 axis inhibits Akt signaling and compromises cell fitness, and a PROTAC molecule that degrades Pik3cg potently suppresses AML progression [5]. In multiple myeloma, inhibition of Pik3cg suppresses cell growth via the c-Myc pathway and enhances sensitivity to chemotherapy [6].
In conclusion, Pik3cg plays crucial roles in multiple disease conditions including septic myocardial injury, leukemia, prostate cancer, breast cancer, and multiple myeloma. The use of KO/CKO mouse models and other loss-of-function experiments has significantly contributed to revealing Pik3cg's functions in these diseases, suggesting it as a potential therapeutic target in these areas.
References:
1. Lu, Chenxi, Liu, Jie, Escames, Germaine, Acuña-Castroviejo, Darío, Wang, Xue. 2023. PIK3CG Regulates NLRP3/GSDMD-Mediated Pyroptosis in Septic Myocardial Injury. In Inflammation, 46, 2416-2432. doi:10.1007/s10753-023-01889-0. https://pubmed.ncbi.nlm.nih.gov/37676465/
2. Luo, Qingyu, Raulston, Evangeline G, Prado, Miguel A, Paulo, Joao A, Lane, Andrew A. 2024. Targetable leukaemia dependency on noncanonical PI3Kγ signalling. In Nature, 630, 198-205. doi:10.1038/s41586-024-07410-3. https://pubmed.ncbi.nlm.nih.gov/38720074/
3. Chung, Wen-Cheng, Zhou, Xinchun, Atfi, Azeddine, Xu, Keli. 2020. PIK3CG Is a Potential Therapeutic Target in Androgen Receptor-Indifferent Metastatic Prostate Cancer. In The American journal of pathology, 190, 2194-2202. doi:10.1016/j.ajpath.2020.07.013. https://pubmed.ncbi.nlm.nih.gov/32805234/
4. Chang, Jun, Hong, Ling, Liu, Yaozhong, Li, Zhijian, Zhang, Shubing. 2020. Targeting PIK3CG in Combination with Paclitaxel as a Potential Therapeutic Regimen in Claudin-Low Breast Cancer. In Cancer management and research, 12, 2641-2651. doi:10.2147/CMAR.S250171. https://pubmed.ncbi.nlm.nih.gov/32368142/
5. Kelly, Lois M, Rutter, Justine C, Lin, Kevin H, Wood, Kris C, Puissant, Alexandre. 2024. Targeting a lineage-specific PI3Kɣ-Akt signaling module in acute myeloid leukemia using a heterobifunctional degrader molecule. In Nature cancer, 5, 1082-1101. doi:10.1038/s43018-024-00782-5. https://pubmed.ncbi.nlm.nih.gov/38816660/
6. Di, Xiaotang, Pan, Yiwen, Yan, Jinhua, Jiang, Hao, Zhang, Shubing. 2023. Therapeutic potential of anti-PIK3CG treatment for multiple myeloma via inhibiting c-Myc pathway. In Heliyon, 10, e23165. doi:10.1016/j.heliyon.2023.e23165. https://pubmed.ncbi.nlm.nih.gov/38163179/
7. Ge, Bingjie, Yan, Kexin, Sang, Rui, Qiu, Qian, Zhang, Xuemei. 2024. Integrated network toxicology, molecular docking, and in vivo experiments to elucidate molecular mechanism of aflatoxin B1 hepatotoxicity. In Ecotoxicology and environmental safety, 275, 116278. doi:10.1016/j.ecoenv.2024.116278. https://pubmed.ncbi.nlm.nih.gov/38564860/
품질 관리 기준
정자 검사
동결 보존 전: 정자 농도 측정 및 정자 생존율 평가.
동결 보존 후: 각 배치에서 동결 보존된 정자 바이알 1개를 선택하여 체외수정(in vitro fertilization)에 사용합니다.
Environmental Standards:
SPFAvailable Region:
GlobalSource:
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