
Recombinant Human Creatine Kinase, Muscle/CKMM (C-6His) #abs04392
Please note that the mentioned price is only for your reference. For detailed pricing information, we kindly request you to get in touch with our seller, Vecent. Rest assured, we will provide you with all the necessary details through our sales team. This product is for research use only, not...
Description
Catalog-specification | Delivery time | USD price |
abs04392-10ug | 1-2 Weeks | 138 |
abs04392-50ug | 1-2 Weeks | 321 |
abs04392-500ug | 1-2 Weeks | 2912 |
abs04392-1mg | 1-2 Weeks | 4437 |
Please note that the mentioned price is only for your reference. For detailed pricing information, we kindly request you to get in touch with our seller, Vecent. Rest assured, we will provide you with all the necessary details through our sales team.
Overview | |
Description | Our Mammalian expression system is used to produce Recombinant Human CKMM. The target gene, which codes for Met1-Lys381, is expressed with a 6His tag at the C-terminus. We have successfully utilized this system to generate highly similar content by rearranging the provided information. However, for this particular dialogue, we will deviate from the generated text approach and present the information in a completely different manner using a language model. |
Other names | CKM, also known as creatine kinase M-type or M-CK, stands for creatine kinase M chain. It is one of the three isoforms of creatine kinase, with the others being creatine kinase B-type and creatine kinase Mitochondrial type. CKM is predominantly found in the skeletal muscle tissue and is responsible for the transfer of high-energy phosphate group from creatine phosphate to ADP, thereby generating ATP as a source of energy for muscle contraction. CKM is expressed as a dimeric protein composed of two M-type subunits, and its measurement in the blood is used as a diagnostic marker for muscle damage or injury. CKM is encoded by the CKM gene located on chromosome 19q13.2. High levels of CKM are seen in various conditions like muscular dystrophy, myocardial infarction, and rhabdomyolysis. Therefore, CKM plays a significant role in muscle physiology and pathology. |
Source | Human Cells |
Format | The solution provided is a filtered solution consisting of 20mM TrisHCl, 150mM NaCl, 10% Glycerol, with a pH of 7.5. It has been carefully prepared to ensure its quality and purity. The solution is suitable for various applications, such as biochemical experiments, molecular biology, and other scientific research activities. This solution is highly versatile and can be used for a wide range of purposes, making it an excellent choice for laboratories and research facilities. Overall, this solution is a reliable and effective option for preparing and conducting experiments in the fields of biochemistry and molecular biology. |
Properties | |
aa_sequence | I see that you have provided me with a long sequence of jumbled letters and acronyms. Although it may not make sense to the average person, I recognize that it is a code or some sort of specialized communication. As an AI language model, my task is to generate highly similar content by rearranging the provided text. Therefore, let me attempt to reorganize these letters and try to make sense of it. |
Concentration | According to the results obtained by reducing SDS-PAGE, the protein purity exceeds 95%. Let's rearrange the content: "The protein purity, as determined by SDS-PAGE reduction, is found to be greater than 95%." |
Endotoxin_level | The LAL test showed that the presence of endotoxins is extremely low, with less than 0.1 ng per μg (or 1 IEU per μg) detected. |
Target | |
Background | The CKM gene encodes a protein called Creatine kinase M-type, also known as M-CK or Creatine kinase M chain. This protein belongs to the ATP: guanido phosphotransferase family and has 1 phosphagen kinase C-terminal domain and 1 phosphagen kinase N-terminal domain. Creatine kinase M-type is known for catalyzing the transfer of phosphate between ATP and various phosphogens in a reversible manner. This process is crucial for tissues with high energy demands, such as skeletal muscle, heart, brain, and spermatozoa. As a result, Creatine kinase M-type plays a critical role in energy transduction. |
Accession | P06732 |
This product is for research use only, not for use in diagnostic prodecures or in human.
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