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重组L-乳酸脱氢酶 (L-LDH)

  • Accession #: P00339,P00336,Q9TSX5
  • 生物活性: ≥300 U/mg protein; Unit definition: One unit will convert one micromole of pyruvate to L-lactate per min at pH 7.4 at 25℃.
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库存信息

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库存信息

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货号 (SKU) 包装规格 是否现货 价格 数量
L196994-5KU
5KU 现货 Stock Image
L196994-10KU
10KU 现货 Stock Image
L196994-25KU
25KU 期货 Stock Image

基本描述

产品名称 重组L-乳酸脱氢酶 (L-LDH)
别名 (重组)乳酸脱氢酶 rD-LDH
英文别名 L-lactate dehydrogenase | L-lactic acid dehydrogenase | L-lactic dehydrogenase | LDHA | LDHB | LDHC | LDH-B | LDH-H | LDH-C | LDH-X
规格或纯度 生物活性, ActiBioPure™, 高性能, EnzymoPure™, 重组, ≥90%(SDS-PAGE), ≥300 U/mg protein
产品介绍


Source: Microorganism 
Isoelectric point: 6.2 
Michaelis constant: 1.3×10^-4 M(Pyruvate); 4.0×10^-6 M(NADH) 
Optimum pH: 6.5~7.5                    Fig. 1
Optimum temperature: 40~50℃                    Fig. 3
pH Stability: 4.5~10.0 (37℃,1hr)                    Fig. 2
Thermal stability: <55℃ (pH 7.4, 15min)                    Fig. 4
Inhibitors: Co2+, Cu2+, Fe3+, Zn2+, NEM, Proclin, SDS&nbsp;
Effect of various chemicals:                     Table 1


Reaction:




生物活性 ≥300 U/mg protein; Unit definition: One unit will convert one micromole of pyruvate to L-lactate per min at pH 7.4 at 25℃.
Accession # P00339,P00336,Q9TSX5
来源 重组表达
预测分子量 38 kDa (SDS-PAGE)

储存与运输

物理形态 冻干(Lyophilized)
储存缓冲液 38 kDa (SDS-PAGE)
浓度 ≥300 U/mg protein
储存温度 避光,-20°C储存,干燥
运输条件 超低温冰袋运输
CAS编号和信息 9001-60-9
酶学委员会编号 EC 1.1.1.27
分子类型

质检证书(CoA,COO,BSE/TSE 和分析图谱)

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批号(Lot Number) 证书类型 货号
ZJ25F1028426 分析证书 L196994
ZJ25F1028425 分析证书 L196994
ZJ25F0723643 分析证书 L196994
ZJ25F0723642 分析证书 L196994
ZJ25F0723641 分析证书 L196994

技术文档和文章

此产品的引用文献

引用文献

1. Dandan Hou, Yansen Wang, Liya Qi, Chunyao Wang, Jingqian Deng, Xiaohuan Zhao, Xue Geng, Qiang Sun, Lin Ye, Zifang Guo.  (2025)  A facile way to fabricate a thrombin immobilized composite sponge with dual hemostatic effects for acute hemorrhage control.  Biomaterials Advances,  166  (214037).  [PMID:39276658] [10.1016/j.bioadv.2024.214037]
2. Yameng Wang, Zi-Yu Liu, Yubei Su, Yu Liu, Aoqun Liu, Xiaoye Zhang, Yugang Huang, Liyun Zhang, Haisheng Chen, Wancheng Zhu.  (2024)  Uncovering fantastic synergistic lithium adsorption with manganese-titanium based composite nanospheres: Mild synthesis and molecular dynamics simulation insights.  Journal of Energy Chemistry,  [10.1016/j.jechem.2024.08.067]

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