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Chemokines

Recombinant Human MIP-1α (CCL3)

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제품 상세

카다로그 번호 300-08
제품 설명
Recombinant Human MIP-1α (CCL3)

Both MIP-1α and MIP-1β are structurally and functionally related CC chemokines. They participate in host response to invading bacterial, viral, parasite and fungal pathogens by regulating the trafficking and activation state of selected subgroups of inflammatory cells (e.g. macrophages, lymphocytes and NK cells). While both MIP-1α and MIP-1β exert similar effects on monocytes, their effect on lymphocytes differ; with MIP-1α selectively attracting CD8+ lymphocytes, and MIP-1β selectively attracting CD4+ lymphocytes. Additionally, MIP-1α and MIP-1β have also been shown to be potent chemoattractants for B cells, eosinophils and dendritic cells. Both human and murine MIP-1α and MIP-1β are active on human and murine hematopoietic cells. Recombinant Human MIP-1α is a 7.8 kDa protein containing 70 amino acid residues, including the four highly conserved cysteine residues present in CC chemokines.

Source: E.coli

Synonyms: Macrophage Inflammatory Protein-1α, CCL3, LD78α

AA Sequence: ASLAADTPTA CCFSYTSRQI PQNFIADYFE TSSQCSKPGV IFLTKRSRQV CADPSEEWVQ KYVSDLELSA

Purity: ≥ 98% by SDS-PAGE gel and HPLC analyses.

Biological Activity: Determined by its ability to chemoattract human monocytes using a concentration range of 1.0-10.0 ng/ml.

Calculated Molecular Weight: 7.8 kDa

Accession Number: P10147

Gene ID: 6348

Endotoxin: Endotoxin level is < 0.1 ng/ug of protein (< 1 EU/ug)

crossreactivity:
Country Of Origin: USA

Not for human use.

Research Interest

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제 1 저자
Du, Y
주제
Chemokines form nanoparticles with DNA and can superinduce TLR-driven immune inflammation.
인용
The Journal of Experimental Medicine; 219(7)
PubMed ID
제 1 저자
Lee, A W
주제
A knottin scaffold directs the CXC-chemokine-binding specificity of tick evasins.
인용
The Journal of Biological Chemistry; 294(29) pg11199-11212
PubMed ID
제 1 저자
Chan, L C
주제
IL-6/JAK1 pathway drives PD-L1 Y112 phosphorylation to promote cancer immune evasion.
인용
The Journal of Clinical Investigation; 129(8) pg3324-3338
PubMed ID