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  2. Denaturation (biochemistry) - Wikipedia

    en.wikipedia.org/wiki/Denaturation_(biochemistry)

    In biochemistry, denaturation is a process in which proteins or nucleic acids lose folded structure present in their native state due to various factors, including application of some external stress or compound, such as a strong acid or base, a concentrated inorganic salt, an organic solvent (e.g., alcohol or chloroform), agitation and radiation, or heat. [3]

  3. 5'-deoxyadenosine deaminase - Wikipedia

    en.wikipedia.org/wiki/5'-deoxyadenosine_deaminase

    The preferred pH for 5'deoxyadenosine deaminase is 9.0, with the enzyme denaturing at a pH of 11. [1] The DadD enzyme has a preferred substrate of 5'deoxyadenosine, though it will also react with 5′-methylthioadenosine, S -adenosylhomocysteine, and adenosine at lower efficiencies.

  4. Guanidinium thiocyanate - Wikipedia

    en.wikipedia.org/wiki/Guanidinium_thiocyanate

    Guanidinium thiocyanate can be used to deactivate a virus, such as the influenza virus that caused the 1918 "Spanish flu", so that it can be studied safely.. Guanidinium thiocyanate is also used to lyse cells and virus particles in RNA and DNA extractions, where its function, in addition to its lysing action, is to prevent activity of RNase enzymes and DNase enzymes by denaturing them.

  5. Deprotonation - Wikipedia

    en.wikipedia.org/wiki/Deprotonation

    Deprotonation of acetic acid by a hydroxide ion. Deprotonation (or dehydronation) is the removal (transfer) of a proton (or hydron, or hydrogen cation), (H +) from a Brønsted–Lowry acid in an acidbase reaction. [1] [2] The species formed is the conjugate base of that acid.

  6. Ribonuclease - Wikipedia

    en.wikipedia.org/wiki/Ribonuclease

    Ribonuclease (commonly abbreviated RNase) is a type of nuclease that catalyzes the degradation of RNA into smaller components. Ribonucleases can be divided into endoribonucleases and exoribonucleases, and comprise several sub-classes within the EC 2.7 (for the phosphorolytic enzymes) and 3.1 (for the hydrolytic enzymes) classes of enzymes.

  7. Enzyme - Wikipedia

    en.wikipedia.org/wiki/Enzyme

    An enzyme's activity decreases markedly outside its optimal temperature and pH, and many enzymes are (permanently) denatured when exposed to excessive heat, losing their structure and catalytic properties. Some enzymes are used commercially, for example, in the synthesis of antibiotics.

  8. Protein precipitation - Wikipedia

    en.wikipedia.org/wiki/Protein_Precipitation

    The attraction forces will cause aggregation and precipitation. The pI of most proteins is in the pH range of 4–6. Mineral acids, such as hydrochloric and sulfuric acid are used as precipitants. The greatest disadvantage to isoelectric point precipitation is the irreversible denaturation caused by the mineral acids. For this reason ...

  9. Gel electrophoresis - Wikipedia

    en.wikipedia.org/wiki/Gel_electrophoresis

    Originally, highly toxic methylmercury hydroxide was often used in denaturing RNA electrophoresis, [17] but it may be method of choice for some samples. [18] Denaturing gel electrophoresis is used in the DNA and RNA banding pattern-based methods temperature gradient gel electrophoresis (TGGE) [19] and denaturing gradient gel electrophoresis ...