Klkb1-KO Mouse
Common Name
Klkb1-KO
제품 ID
S-KO-18613
Backgroud
C57BL/6JCya
품종 계통계통 ID
KOCMP-16621-Klkb1-B6J-VB
상태
이 마우스 계통을 논문에서 사용할 경우, “Klkb1-KO Mouse (카탈로그 번호 S-KO-18613)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
Klkb1-KO
품종 계통계통 ID
KOCMP-16621-Klkb1-B6J-VB
유전자명
제품 ID
S-KO-18613
유전자 별칭
APS, PSA, Kal3, Klk3, Kal-3
배경
C57BL/6JCya
NCBI ID
변형 내용
Conventional knockout
염색체
Chr 8
Phenotype
Datasheet
적용 분야
--
품종 계통 설명
Ensembl 전사체 ID
ENSMUST00000026907
NCBI 전사체 ID
NM_008455
타겟 영역
Exon 1~2
유효 영역 크기
~1.5 kb
유전자 연구 개요
Klkb1, encoding plasma prekallikrein, is also known as Fletcher factor or kallikrein B1. Its physiological role is to catalyze the release of kinins and other vasoactive peptides [6]. It is unique as coagulation factor XI (FXI) arose through a duplication of the Klkb1 gene [2]. Klkb1 is associated with multiple biological processes and diseases, including its role in the coagulation cascade, barrier function, platelet activation, inflammation, and the immune response [2].
In the context of hereditary angioedema, NTLA-2002, an in vivo gene-editing therapy based on CRISPR-Cas9, targets Klkb1. In a phase 1 dose-escalation trial, a single dose of NTLA-2002 led to robust, dose-dependent, and durable reductions in total plasma kallikrein levels, with significant decreases in angioedema attacks at all dose levels, and no severe adverse events were observed [1]. In the phase 2 portion of the trial, single doses of 25 mg or 50 mg of NTLA-2002 reduced angioedema attacks and led to sustained reduction in total plasma kallikrein levels [5]. Additionally, Klkb1 has been associated with HDL-mediated cholesterol efflux capacity in a genome-wide association study [3], may be a potential prognostic biomarker for hepatocellular carcinoma [4], and its polymorphisms are associated with pulmonary thromboembolism in the Chinese Han population [7]. It has also been identified as a potential drug target for keloids [8], and its mRNA expression may be a diagnostic biomarker for chronic lymphocytic leukemia [6].
In conclusion, Klkb1 is crucial for the regulation of various biological functions. Studies using gene-editing approaches targeting Klkb1, like NTLA-2002 in hereditary angioedema, have shown promise in understanding its role in disease and potential therapeutic applications. Its associations with multiple diseases highlight its importance in biomedical research, providing potential targets for drug development and disease diagnosis.
References:
1. Longhurst, Hilary J, Lindsay, Karen, Petersen, Remy S, Lebwohl, David, Cohn, Danny M. . CRISPR-Cas9 In Vivo Gene Editing of KLKB1 for Hereditary Angioedema. In The New England journal of medicine, 390, 432-441. doi:10.1056/NEJMoa2309149. https://pubmed.ncbi.nlm.nih.gov/38294975/
2. Moellmer, Samantha A, Puy, Cristina, McCarty, Owen J T. . Biology of factor XI. In Blood, 143, 1445-1454. doi:10.1182/blood.2023020719. https://pubmed.ncbi.nlm.nih.gov/37874916/
3. Schachtl-Riess, Johanna F, Schönherr, Sebastian, Lamina, Claudia, Köttgen, Anna, Kronenberg, Florian. 2023. KLKB1 and CLSTN2 are associated with HDL-mediated cholesterol efflux capacity in a genome-wide association study. In Atherosclerosis, 368, 1-11. doi:10.1016/j.atherosclerosis.2023.01.022. https://pubmed.ncbi.nlm.nih.gov/36812656/
4. Che, Yi-Qun, Zhang, Yue, Li, Han-Bing, Shen, Di, Cui, Wei. 2021. Serum KLKB1 as a Potential Prognostic Biomarker for Hepatocellular Carcinoma Based on Data-Independent Acquisition and Parallel Reaction Monitoring. In Journal of hepatocellular carcinoma, 8, 1241-1252. doi:10.2147/JHC.S325629. https://pubmed.ncbi.nlm.nih.gov/34676182/
5. Cohn, Danny M, Gurugama, Padmalal, Magerl, Markus, Lebwohl, David, Longhurst, Hilary J. 2024. CRISPR-Based Therapy for Hereditary Angioedema. In The New England journal of medicine, 392, 458-467. doi:10.1056/NEJMoa2405734. https://pubmed.ncbi.nlm.nih.gov/39445704/
6. Adamopoulos, Panagiotis G, Kontos, Christos K, Papageorgiou, Sotirios G, Pappa, Vassiliki, Scorilas, Andreas. 2015. KLKB1 mRNA overexpression: A novel molecular biomarker for the diagnosis of chronic lymphocytic leukemia. In Clinical biochemistry, 48, 849-54. doi:10.1016/j.clinbiochem.2015.04.007. https://pubmed.ncbi.nlm.nih.gov/25891023/
7. Wang, Min-Ne, Xu, Xiao-Mao, Zhai, Zhen-Guo, Fei, Xiao, Guo, Jian. . Association between KLKB1 Polymorphisms and Pulmonary Thromboembolism. In Zhongguo yi xue ke xue yuan xue bao. Acta Academiae Medicinae Sinicae, 37, 274-8. doi:10.3881/j.issn.1000-503X.2015.03.005. https://pubmed.ncbi.nlm.nih.gov/26149136/
8. Wang, Yinmin, Wang, Xiuxia, Yuan, Zhaoqi, Luo, Xusong, Yang, Jun. 2024. Identifying Potential Drug Targets for Keloid: A Mendelian Randomization Study. In The Journal of investigative dermatology, 145, 77-84.e6. doi:10.1016/j.jid.2024.04.023. https://pubmed.ncbi.nlm.nih.gov/38797322/
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:
Cyagen문의하기
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