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Recombinant Mouse AMY1 Protein

Cat.No. : AMY1-1612M
Product Overview : Recombinant Mouse AMY1 full length or partial length protein was expressed.
  • Specification
  • Gene Information
  • Related Products
Source : Mammalian Cells
Species : Mouse
Tag : His
Form : Liquid or lyophilized powder
Endotoxin : < 1.0 EU per μg of the protein as determined by the LAL method.
Purity : >80%
Notes : This item requires custom production and lead time is between 5-9 weeks. We can custom produce according to your specifications.
Storage : Store it at +4 ºC for short term. For long term storage, store it at -20 ºC~-80 ºC.
Storage Buffer : PBS buffer
Gene Name : Amy1 amylase 1, salivary [ Mus musculus ]
Official Symbol : AMY1
Gene ID : 11722
mRNA Refseq : NM_001110505.1
Protein Refseq : NP_001103975.1
MIM :
UniProt ID : P00687

For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.

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Q&As (9)

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Can changes in AMY1 gene expression be influenced by environmental factors? 05/30/2022

Yes, it is believed that environmental factors, such as diet and lifestyle, can influence the expression of the AMY1 gene. For example, studies have demonstrated that increased consumption of starch in the diet can lead to an upregulation of AMY1 gene expression, resulting in higher levels of salivary amylase. Additionally, certain medications and diseases that affect the salivary glands or overall metabolism can potentially impact AMY1 gene expression and subsequent amylase levels.

How do variations in the AMY1 gene affect starch digestion and metabolism? 02/22/2022

Variations in the AMY1 gene, which codes for the AMY1 protein, can impact starch digestion and metabolism. In individuals with a higher number of AMY1 gene copies, there is increased production of salivary alpha-amylase, leading to higher levels of the enzyme in the saliva. This increased enzyme activity can facilitate better digestion of starches, resulting in more efficient breakdown of complex carbohydrates into simpler sugars.

Can AMY1 protein levels in saliva be measured? 06/01/2021

Yes, the levels of AMY1 protein in saliva can be measured through biochemical assays. These assays typically involve detecting the enzymatic activity of salivary amylase on a starch substrate. By quantifying the breaking down of starch into smaller sugars, the level of AMY1 protein activity in one's saliva can be estimated. Various commercial kits and laboratory methods are available for such measurements.

Are there any therapeutic implications of AMY1 protein research? 03/11/2020

The understanding of AMY1 protein research can potentially be utilized in therapeutic interventions for individuals with certain metabolic disorders or conditions characterized by impaired carbohydrate digestion.

Is there a correlation between AMY1 gene variations and different populations or ethnic groups? 02/05/2020

Yes, there is evidence to suggest that the number of AMY1 gene copies can vary among different populations and ethnic groups. Studies have found that populations with a long history of consuming starch-rich diets, such as those in East Asia and parts of Africa, tend to have a higher number of AMY1 gene copies compared to populations with traditional low-starch diets, such as some indigenous groups in the Americas. This variation may reflect adaptations to local dietary practices over time.

Are there any potential applications or implications of AMY1 protein research? 02/11/2019

Research on the AMY1 protein and its genetic variations can have several applications and implications. It can provide insights into individual dietary needs by understanding how variations in the AMY1 gene affect starch digestion and metabolism. This knowledge may be useful in personalized nutrition recommendations, helping individuals optimize their carbohydrate intake for better health outcomes.

Are there any health implications associated with variations in the AMY1 gene? 10/25/2017

Variations in the AMY1 gene have been studied in the context of nutrition, obesity, and metabolic health. Some research suggests that individuals with a higher number of AMY1 gene copies may have a better ability to handle starches in their diet, which could potentially contribute to better blood sugar control and reduced risk of obesity and related metabolic disorders.

Are there any variations in the AMY1 gene that impact its function? 04/08/2017

Yes, there are genetic variations in the AMY1 gene that have been found to influence the production and activity of the AMY1 protein. These variations affect the number of copies of the AMY1 gene an individual has. Some individuals have a higher number of AMY1 gene copies, leading to increased AMY1 protein production and higher salivary amylase levels in their saliva. On the other hand, some individuals have fewer gene copies, resulting in lower salivary amylase levels. This genetic variation is thought to contribute to individual differences in starch digestion and metabolism.

Where is the AMY1 protein produced? 04/03/2017

The production of the AMY1 protein primarily occurs in the salivary glands, specifically in the parotid glands, which are the largest of the salivary glands. Salivary alpha-amylase is produced and secreted into the saliva, where it becomes active in starch digestion.

Customer Reviews (5)

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Reviews
09/24/2022

    This flexibility allows for tailored approaches and provides researchers with more options to study specific aspects of AMY1 biology or its interactions with other molecules.

    10/27/2021

      Manufacturers can provide comprehensive product information, including data on the functionality, stability, and handling of AMY1 protein.

      03/04/2021

        Manufacturers can ensure high-quality production of AMTN protein, maintaining its purity and integrity.

        12/26/2017

          Reputable manufacturers often provide technical support to researchers using AMY1 protein.

          02/02/2016

            This guarantees the reliability and reproducibility of research findings and eliminates potential issues arising from impurities or contamination.

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