OX40 cDNA ORF Clone, Mouse, N-His tag

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OX40 cDNA ORF Clone, Mouse, N-His tag: 製品情報

遺伝子
Mouse
NCBI 参考シーケンス番号
遺伝子の長さ
819 bp
製品の特徴
Full length Clone DNA of Mouse tumor necrosis factor receptor superfamily, member 4 with N terminal His tag.
プラスミド
プロモーター
Enhanced CMV promoter
ベクター
タグシーケンス
His Tag Sequence: CACCATCACCACCATCATCACCACCATCAC
シークエンシングプライマー
T7( 5' TAATACGACTCACTATAGGG 3' )
BGH( 5' TAGAAGGCACAGTCGAGG 3' )
品質管理
The plasmid is confirmed by full-length sequencing.
スクリーニング
細菌スクリーニング抵抗力
Kanamycin
細胞スクリーニング抵抗力
Hygromycin
アプリケーション
Stable or Transient mammalian expression
保存 & 配送
配送方法
Each tube contains lyophilized plasmid.
保存条件
The lyophilized plasmid can be stored at ambient temperature for three months.

OX40 cDNA ORF Clone, Mouse, N-His tag: 別名

ACT35 cDNA ORF Clone, Mouse; CD134 cDNA ORF Clone, Mouse; Ly-70 cDNA ORF Clone, Mouse; Ox40 cDNA ORF Clone, Mouse; Txgp1 cDNA ORF Clone, Mouse; TXGP1L cDNA ORF Clone, Mouse

OX40 背景情報

OX4 (CD134) and its binding partner, OX4L (CD252), are members of the tumor necrosis factor receptor/tumor necrosis factor superfamily, is known to break an existing state of tolerance in malignancies, leading to a reactivation of antitumor immunity. The interaction between OX4 and OX4L plays an important role in antigen-specific T-cell expansion and survival. OX4 and OX4L also regulate cytokine production from T cells, antigen-presenting cells, natural killer cells, and natural killer T cells, and modulate cytokine receptor signaling. In line with these important modulatory functions, OX4-OX4L interactions have been found to play a central role in the development of multiple inflammatory and autoimmune diseases, making them attractive candidates for intervention in the clinic. Conversely, stimulating OX4 has shown it to be a candidate for therapeutic immunization strategies for cancer and infectious disease.
完全な名称
tumor necrosis factor receptor superfamily, member 4
参考文献
  • Compaan D.M., et al. (2006) .The crystal structure of the costimulatory OX40-OX40L complex. Structure 14:1321-1330.
  • Kawamata S., et al. (1998) .Activation of OX40 signal transduction pathways leads to tumor necrosis factor receptor-associated factor (TRAF) 2- and TRAF5-mediated NF-kappaB activation. J. Biol. Chem. 273:5808-5814.
  • Byun M., (2013) Inherited human OX40 deficiency underlying classic Kaposi sarcoma of childhood. J. Exp. Med. 210:1743-1759.
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