IPTG [Isopropyl-?-D-thiogalactopyranoside], 5 Grams
85% of respondents would recommend this to a friend
SCR 1959
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IPTG combined with X-GAL effectively distinguishes recombinants from non-recombinants in cloning strategies.
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Who Should Buy?
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Molecular Biologists
Ideal for researchers studying gene expression in E. coli using the lac operon system.
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Biotechnology Students
Useful for students learning about induced gene expression and protein production in laboratory courses.
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Protein Engineers
Beneficial for professionals expressing recombinant proteins in bacterial systems during research and development.
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Non-research Users
Not suitable for casual users or hobbyists without a background in biochemistry or molecular biology.
Product Description
IPTG [Isopropyl-?-D-thiogalactopyranoside], 5 Grams
Customer Questions & Answers
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Question:
What is IPTG and how is it used in molecular biology?
Answer: IPTG, or Isopropyl ?-D-thiogalactopyranoside, is a non-hydrolyzable analog of lactose that acts as a powerful inducer for the expression of genes under the control of the lac operon in bacteria. It is commonly utilized in recombinant DNA technology to promote the production of proteins in Escherichia coli. By adding IPTG to bacterial cultures, researchers can trigger high levels of gene expression, making it ideal for laboratory experiments focusing on protein analysis or purification. -
Question:
What are the storage conditions for IPTG?
Answer: IPTG should be stored in a cool, dry place, ideally at -20°C. When in powdered form, it remains stable for long periods, but after dissolving in water, it should be kept at 4°C and ideally used within a few weeks. Proper storage ensures that IPTG maintains its effectiveness as an inducer for protein production, which is critical in experiments that rely on consistent gene expression and results. -
Question:
Can IPTG be used for protein purification?
Answer: Yes, IPTG is often used as a key component in protocols for protein purification. When induced in bacterial cultures, it leads to high yields of the target protein, which can then be harvested and purified using various chromatography methods. This approach is widely used in research laboratories for producing proteins that are utilized in biochemical studies, structural biology, and therapeutic applications. -
Question:
Is IPTG toxic to bacteria?
Answer: IPTG is generally non-toxic to E. coli at concentrations typically used in laboratories. It effectively induces protein expression without inhibiting bacterial growth at standard levels. However, it is essential to optimize the concentration for your specific applications, as very high levels might exert stress on bacterial systems, impacting growth or protein folding. -
Question:
What are some practical applications of IPTG in research?
Answer: IPTG is frequently employed in molecular biology, specifically for protein expression studies, enzyme activity assays, and the development of biosensors. It provides researchers with the ability to control gene expression levels precisely, enabling detailed studies of protein function, interaction, and dynamics. For example, IPTG induction is crucial in investigations that unravel cellular mechanisms in gene regulation or metabolic pathways. -
Question:
What is the molecular weight of IPTG?
Answer: The molecular weight of IPTG is 238.3 g/mol. This information is essential for accurately preparing working solutions for experiments. Understanding the molecular weight allows researchers to calculate the precise amounts needed for effective gene expression, ensuring the reliability of experimental results when working with plasmids that require IPTG as an inducer. -
Question:
How does IPTG compare to lactose as an inducer?
Answer: Unlike lactose that is hydrolyzed by ?-galactosidase in bacteria, IPTG is a stable and non-hydrolyzable analog of lactose, meaning it remains intact within the bacterial cell. This characteristic enables IPTG to continuously induce gene expression regardless of the bacteria's metabolic activity. Consequently, IPTG allows for a more consistent and robust induction of target proteins compared to lactose, making it preferable in many experimental protocols. -
Question:
How should IPTG be prepared for use in experiments?
Answer: To prepare IPTG, dissolve the powdered form in sterile distilled water or buffer solution to create a stock solution, typically at a concentration of 1 M. This stock solution can then be diluted to the desired final concentration (usually 0.1 to 1 mM) for use in bacterial cultures. It is crucial to ensure that the solution is filter-sterilized and stored appropriately to maintain its effectiveness as an inducer. -
Question:
What role does IPTG play in studying gene regulation?
Answer: IPTG serves as a vital tool in gene regulation studies by allowing researchers to modify the expression levels of specific genes at will. By introducing IPTG at various concentrations into cultures, scientists can analyze the resulting expression patterns and cellular responses. This capability paves the way for deeper insights into regulatory mechanisms, enhancing our understanding of genetics and cellular biology. -
Question:
What is the recommended dosage of IPTG for bacterial induction?
Answer: A common recommendation for IPTG dosage is to use concentrations between 0.1 mM and 1 mM in bacterial cultures. The exact amount may depend on the specific plasmid and bacterial strain used. Testing a range of concentrations may help determine the optimal IPTG levels that result in the desired protein yield without negatively impacting bacterial growth or protein folding. -
Question:
Where can I buy IPTG [Isopropyl-?-D-thiogalactopyranoside], 5 Grams in Seychelles?
Answer: You can purchase IPTG (Isopropyl-?-D-thiogalactopyranoside), 5 Grams from Ubuy in Seychelles. Ubuy offers a wide selection of laboratory reagents and chemicals, ensuring you have access to high-quality IPTG for your research needs. Their platform simplifies the purchasing process, making it easier to acquire the necessary materials for your experiments.
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Pros
- High purity for reliable results
- Easy to use in experiments
- Stable under various conditions
- Promotes effective protein expression
- Widely trusted by researchers
Cons
- Only available in small quantities.
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SCR 1959
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Features & Benefits
- Detects lac colonies or cells with a colorimetric assay.
- Distinguishes white recombinants from blue non-recombinants.
- Ideal for cloning strategies using popular vectors.
- Dioxane-Free Water content ensures purity.
- Sold for research or manufacturing use only.
- Not suitable for food or drug use.
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