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C57BL/6JCya-Pak2em1/Cya
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C57BL/6JCya-Pak2em1/Cya

Common Name
Pak2-KO
Product ID
S-KO-05783
Backgroud
C57BL/6JCya
Strain ID
KOCMP-224105-Pak2-B6J-VA
Status
Research and Development
When using this mouse strain in a publication, please cite “Pak2-KO Mouse (Catalog S-KO-05783) were purchased from Cyagen.”
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ErbB signaling pathway
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KO Models
ErbB signaling pathway
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Basic Information
Strain Name
Pak2-KO
Strain ID
KOCMP-224105-Pak2-B6J-VA
Gene Name
Pak2
Product ID
S-KO-05783
Gene Alias
PAK-2, mKIAA4182, D16Ertd269e, 5330420P17Rik, A130002K10Rik
Background
C57BL/6JCya
Gene Full Name
p21 (RAC1) activated kinase 2
Modification
Conventional knockout
NCBI ID
224105 (Mouse)
Phenotype
MGI:1339984
Chromosome
Chr 16 (Mouse)
Application
--
Datasheet
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Strain Description
Ensembl Transcript ID
ENSMUST00000023467
NCBI Transcript ID
NM_177326
Target Region
Exon 2
Size of Effective Region
~2.2 kb
Overview of Gene Research
PAK2, a serine-threonine kinase, is a member of the p21-activated kinase (PAK) family. It is activated by GTP-bound rho family GTPases, Rac, and Cdc42, and regulates various cellular processes such as actin dynamics, cell adhesion, and motility. PAK2 is involved in multiple signaling pathways, including those related to pancreatic acinar cell function, cancer progression, and myelination [2].

In pancreatic acinar cells, inhibition of PAK2 by specific inhibitors like IPA-3, FRAX597 or using a PAK2-dominant negative-Advirus suppressed the activation of focal-adhesion kinases, mitogen-activated protein-kinases and reversed the dual effect on the PI3K/Akt/GSK-3β pathway. PAK2-inhibition also protected acini from CCK-induced ROS-generation, caspase/trypsin-activation, cell-necrosis and reduced proteolytic-activation of PAK-2p34, suggesting its role in pancreatitis [1]. In pancreatic cancer, single-cell and bulk data analysis identified PAK2 as a key gene promoting liver metastasis. Silencing PAK2 in pancreatic cancer cells decreased their proliferative and invasive capacity [3]. In Schwann cells, deletion of Pak2 in a Schwann cell-specific knockout mouse (scPak2-/-) led to severe hypomyelination, slowed nerve conduction velocity and behavior dysfunctions, indicating PAK2 is necessary for myelination in the peripheral nervous system [4].

In conclusion, PAK2 is crucial in multiple biological processes. Its roles in pancreatitis, cancer metastasis and myelination have been revealed through various functional studies including gene knockout models. Understanding PAK2's functions provides potential therapeutic targets for diseases like pancreatitis and pancreatic cancer, and insights into the mechanisms of myelination in the peripheral nervous system.

References:
1. Nuche-Berenguer, Bernardo, Ramos-Álvarez, Irene, Jensen, R T. 2016. The p21-activated kinase, PAK2, is important in the activation of numerous pancreatic acinar cell signaling cascades and in the onset of early pancreatitis events. In Biochimica et biophysica acta, 1862, 1122-36. doi:10.1016/j.bbadis.2016.02.008. https://pubmed.ncbi.nlm.nih.gov/26912410/
2. Wu, Megan, Sarkar, Chandan, Guo, Bin. 2024. Regulation of Cancer Metastasis by PAK2. In International journal of molecular sciences, 25, . doi:10.3390/ijms252413443. https://pubmed.ncbi.nlm.nih.gov/39769207/
3. Yang, Hao, Li, Zhongyi, Zhu, Shiqi, Xu, Wei, Xu, Chunfang. 2024. Molecular mechanisms of pancreatic cancer liver metastasis: the role of PAK2. In Frontiers in immunology, 15, 1347683. doi:10.3389/fimmu.2024.1347683. https://pubmed.ncbi.nlm.nih.gov/38343537/
4. Hu, Bo, Moiseev, Daniel, Schena, Isabella, Chernoff, Jonathan, Li, Jun. . PAK2 is necessary for myelination in the peripheral nervous system. In Brain : a journal of neurology, 147, 1809-1821. doi:10.1093/brain/awad413. https://pubmed.ncbi.nlm.nih.gov/38079473/
Quality Control Standard
Sperm Test

Pre-cryopreservation: Measurement of sperm concentration, determination of sperm viability.

Post-cryopreservation: A vial of cryopreserved sperms is selected for in-vitro fertilization from each batch.

Environmental Standards:SPF
Available Region:Global
Source:Cyagen
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Global Antibody Drug Industry Development BlueBook (Frost & Sullivan)
Key Insights
The industry is undergoing a rapid transformation driven by next-generation modalities, globalized markets, and upstream technological innovations.
  • Market Structural Shift: Monoclonal antibodies drive steady growth, but ADCs and bispecifics are rapidly accelerating, reshaping the market with higher-value innovations.
  • Chinese Market Globalization: China is actively expanding globally, evidenced by a surge in high-value cross-border license-out deals.
  • Technology-Driven Efficiency: Advanced discovery engines—exemplified by Cyagen's HUGO-Ab platform and AI algorithms—are streamlining candidate screening, optimizing molecular design, and localizing the upstream supply chain.
  • Oncology-Focused Innovation: R&D pipelines remain heavily concentrated on high-incidence malignancies like non-small cell lung cancer, utilizing complex modalities to combat clinical resistance.
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