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DTE, molecular biology grade

CAS Nr.: 6892-68-8
EC Nr.: 229-998-8
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Product information "DTE, molecular biology grade"

Dithioerythritol (DTE) ist ein Isomer des Dithiothreitol (DTT). Prinzipiell ist DTE gegen DTT austauschbar bzw. DTT gegen DTE. DTE hat pK-Werte von 9,0 und 9,9 und DTT von 8,3 und 9,5. Da beide Verbindungen nur im ionisierten Zustand funktionieren, ist ihre reduzierende Wirkung im pH-Bereich 7,0 - 9,5 am höchsten. Im niedrigeren pH-Bereich ist DTT aktiver als DTE. Die reduzierende Wirkung kann durch Ansäuern (z. B. Essigsäure auf pH 3) gestoppt werden. Proteine können während der Gelelektrophorese oxidieren. Dies resultiert in breiteren Banden (verminderte Auflösung) und nicht reproduzierbarer Mobilität (Fehleinschätzung des Molekulargewichtes). Reduktion der Proteine mit DTE (0,25 M Stammlösung in Wasser, 5 mM Endkonzentration) und Alkylierung mit Iodacetamid (0,25 M Stammlösung, 1 : 20 verdünnt in der Endkonzentration) verschafft Abhilfe.

Specifications:
Purity: min. 99.2%
MP = 82 - 83°C
pH (0.1M in water): 4.0-6.0
Fe: max. 0.0005%
Heavy metals: max. 0.001%
MW = 154.3 g/mol

Application:

used in stead of mercaptoethanol to reduce disulfide bonds of proteins.

Safety Information:

H Statements: H315, H319, H335
GHS symbols: GHS07

Classification:

EC no: 229-998-8
CAS no.: 6892-68-8
eclass no.: 32-16-04-90
Documents - Protocols - Downloads :
Here you will find information and further literature. For further documents (certificates with additional lot numbers, safety data sheets in other languages, further product information) please contact Genaxxon biosience at: info@genaxxon.com or phone: +49 731 3608 123.


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Accessory Items

DL-Dithiothreitol

Dithiothreitol (DTT) is an isomer (epimer) of dithioerythritol (DTE). In principle, DTT can be exchanged for DTE or DTE for DTT, of which both are excellent reducing substances. Dithiothreitol (DTT), like ß-mercaptoethanol, is used as a reducing agent to increase the stability of proteins as protection against the undesired oxidation of cysteine residues. Proteins can oxidize during gel electrophoresis. This results in broader bands (reduced resolution) and non-reproducible mobility (incorrect assessment of the molecular weight). DTT can be used in practically all experiments in a three to four times lower molar concentration than ß-mercaptoethanol. It is less toxic, less odor intensive and does not form mixed disulfides like ß-mercaptoethanol. DTT is water-soluble and is usually prepared as a 1M stock solution. This solution should be stored in aliquots at -20°C and protected from heat while working. A sufficient amount should be added to the solutions in the experiment, since it oxidizes relatively quickly in air. The working concentration is between 0.1 and 1mM, but must be increased to up to 5mM, for example in the production of plant extracts, or up to 10mM in the 'large scale in situ isolation' of proteins during fermentation. While DTT has a pK value of 8.3 and 9.5, the pK is 9.0 and 9.9 for DTE. Since both compounds show their reducing properties only in the ionized state, their reducing effect is greatest in the pH range 7.0 - 9.5. In the lower pH range, DTT is more active than DTE. The reducing effect can be stopped by acidification (e.g. acetic acid to pH3).

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