Protein expression and purification Tissue

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Get tips on using Viability/Cytotoxicity Assay kit for Bacteria Live and Dead Cells to perform Live / Dead assay bacteria - Salmonella enterica

Products Biotium Viability/Cytotoxicity Assay kit for Bacteria Live and Dead Cells

Get tips on using MEMα with L-Glutamine, Phenol Red, Sodium Pyruvate and Nucleosides to perform Stem cell Differentiation media mPericytes differentiation into Osteogenic cells

Products Fujifilm Wako Chemicals Europe Gmbh MEMα with L-Glutamine, Phenol Red, Sodium Pyruvate and Nucleosides

RNA RNA isolation / purification Cells Cancer cell lines Leukemia cancer cell lines THP-1

RNA RNA isolation / purification Cells Cancer cell lines Leukemia cancer cell lines KG-1

Get tips on using Legionella Agar with L-cysteine (BCYE) and without L-cysteine (BCY) to perform Bacterial cell culture media Legionella pneumophilia

Products Biomerieux Legionella Agar with L-cysteine (BCYE) and without L-cysteine (BCY)

DNA Microarray RNA amplification & Labeling Mouse Myofibers Cy3- or/and Cy5

RNA siRNA / RNAi /miRNA transfection Mouse Primary cortical and hippocampal cell

Get tips on using IMAGEN™ Influenza Virus A and B Kit using Direct Immunofluorescence Assay to perform Cell Culture Contamination Detection Kit Virus

Products Thermo Fisher Scientific IMAGEN™ Influenza Virus A and B Kit using Direct Immunofluorescence Assay

A restriction enzyme or restriction endonuclease is defined as a protein that recognizes a specific, short nucleotide sequence and cuts the DNA only at or near that site, known as restriction site or target sequence. The four most common types of restriction enzymes include: Type I (cleaves at sites remote from a recognition site), Type II (cleaves within or at short specific distances from a recognition site), Type III (cleave at sites a short distance from a recognition site), and Type IV (targets modified DNA- methylated, hydroxymethylated and glucosyl-hydroxymethylated DNA). The most common challenges with restriction digest include- 1. inactivation of the enzyme, 2. incomplete or no digestion, and 3. unexpected cleavage. The enzyme should always be stored at -20C and multiple freeze-thaw cycles should be avoided in order to maintain optimal activity. Always use a control DNA digestion with the enzyme to ensure adequate activity (to avoid interference due to high glycerol in the enzyme). For complete digestion, make sure that the enzyme volume is 1/10th of the total reaction volume, the optimal temperature is constantly maintained throughout the reaction, the total reaction time is appropriately calculated based on the amount of DNA to be digested, appropriate buffers should be used to ensure maximal enzymatic activity, and in case of a double digest, make sure that the two restriction sites are far enough so that the activity of one enzyme cannot interfere with the activity of the other. Star activity (or off-target cleavage) and incomplete cleavage are potential challenges which may occur due to suboptimal enzymatic conditions or inappropriate enzyme storage. To avoid these, follow the recommended guidelines for storage and reactions, and always check for the efficacy of digestion along with purification of digested products on an agarose gel.

Proteins Restriction Enzymes HindIII

A restriction enzyme or restriction endonuclease is defined as a protein that recognizes a specific, short nucleotide sequence and cuts the DNA only at or near that site, known as restriction site or target sequence. The four most common types of restriction enzymes inclue: Type I (cleaves at sites remote from a recognition site), Type II (cleaves within or at short specific distances from a recognition site), Type III (cleave at sites a short distance from a recognition site), and Type IV (targets modified DNA- methylated, hydroxymethylated and glucosyl-hydroxymethylated DNA). The most common challenges with restriction digest include- 1. inactivation of enzyme, 2. incomplete or no digestion, and 3. unexpected cleavage. The enzyme should always be stored at -20C and multiple freeze-thaw cycles should be avoided in order to maintain optimal activity. Always use a control DNA digestion with the enzyme to ensure adequate activity (to avoid interference due to high glycerol in the enzyme). For complete digestion, make sure that the enzyme volume is 1/10th of the total reaction volume, optimal temperature is constantly maintained throughout the reaction, the total reaction time is appropriately calculated based on the amount of DNA to be digested, appropriate buffers should be used to ensure maximal enzymatic activity, and in case of a double digest, make sure that the two restriction sites are far enough so that the activity of one enzyme cannot interfere with activity of the other. Star activity (or off-target cleavage) and incomplete cleavage are potential challenges which may occur due to suboptimal enzymatic conditions or inappropriate enzyme storage. To avoid these, follow the recommended guidelines for storage and reactions, and always check for the efficacy of digestion along with purification of digested products on an agarose gel.

Proteins Restriction Enzymes BamHI

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