| 产品编号 | 
bs-41112P | 
| 英文名称 | 
Recombinant human Creatine Kinase B protein	 | 
| 中文名称 | 
重组人脑型肌酸激酶蛋白	 | 
| 别    名 | 
B CK; B CK; B-CK; BB-CK; BCK; Brain creatine kinase; Ckb; CKBB; CK-BB; Creatine kinase B; Creatine kinase B chain; Creatine kinase B-type; Creatine Kinase BB Isoenzyme; Creatine Kinase BB Isoenzyme; Creatine Kinase BB Isoenzyme; Creatine kinase brain; Creatine phosphokinase BB; KCRB_HUMAN; Recombinant human Creatine Kinase B protein   | 
| 克 隆 号 | 
	 | 
| 理论分子量 | 
43	kDa | 
| 检测分子量 | 
50 	 | 
| 性    状 | 
Liquid | 
| 浓    度 | 
>0.5 mg/ml | 
| 物    种 | 
Human | 
| 序    列 | 
1-381/381 | 
| 纯    度 | 
>90% as determined by SDS-PAGE | 
| 纯化方法 | 
AC | 
| 内毒素 | 
Not analyzed | 
| 表达系统 | 
E.coli | 
| 活性 | 
Not tested | 
| 标签 | 
N-His | 
| 缓 冲 液 | 
20mM Tris-HCl (pH8.0) with 150mM NaCl. | 
| 保存条件 | 
Stored at -70℃ or -20℃. Avoid repeated freeze/thaw cycles. | 
| 注意事项 | 
This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications. | 
| 产品介绍 | 
The protein encoded by this gene, CK-BB, consists of a homodimer of two identical brain-type CK-B subunits. BB-CK is a cytoplasmic enzyme involved in cellular energy homeostasis, with certain fractions of the enzyme being bound to cell membranes, ATPases, and a variety of ATP-requiring enzymes in the cell. There, CK-BB forms tightly coupled microcompartments for in situ regeneration of ATP that has been used up. The encoded protein reversibly catalyzes the transfer of "energy-rich" phosphate between ATP and creatine or between phospho-creatine (PCr) and ADP. Its functional entity is a homodimer (CK-BB) in brain and smooth muscle as well as in other tissues and cells such as neuronal cells, retina, kidney, bone, etc. In heart, a heterodimer (CK-MB) shahil consisting of one CK-B brain-type CK subunit and one CK-M muscle-type CK subunit is prominently expressed. The encoded CK-BB and CK-MB proteins are members of the ATP:guanido phosphotransferase protein family.
  
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| 产品图片 | 
The purity of the protein is greater than 90% as determined by reducing SDS-PAGE.
 
 
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