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Ribonuclease T

Class of enzymes

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Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionOct 26, 2025
Entity authorityQ19059632
Source-derived summary

Ribonuclease T (RNase T, exonuclease T, exo T) is a ribonuclease enzyme involved in the maturation of transfer RNA and ribosomal RNA in bacteria, as well as in DNA repair pathways. It is a member of the DnaQ family of exonucleases and non-processively acts on the 3' end of single-stranded nucleic acids. RNase T is capable of cleaving both DNA and RNA, with extreme sequence specificity discriminating against cytosine at the 3' end of the substrate.

Structure and mechanism

RNAse T catalyzes the removal of nucleotides from the 3' end of both RNA and DNA. It is inhibited by both double stranded DNA and RNA, as well as cytosine residues on the 3' end of RNA. Two cytosines at the 3' end of RNA appear to remove the activity of RNAse T entirely. This cytosine effect, however, is observed less with ssDNA. This lack of sequence specificity in ssDNA, combined with its ability to act on ssDNA close to a duplex region, has led to its use in creating blunt ends for DNA cloning. Structurally, RNAse T exists as an anti-parallel dimer and requires a divalent cation to function.

RNAse T is able to achieve its sequence specificity in RNA digestion via several aromatic residues that sandwich between nucleobases. The π-π interactions between four phenylalanine residues and the two nucleotides at the 3' end are different depending on the identify of the nucleotides, which changes the conformation and thus activity of the enzyme. An additional glutamic acid residue rotates to hydrogen bond to cytosine but not other bases, further increasing specificity.

Function

A member of the larger DEDD family of exoribonucleases, RNAse T plays a key role in the maturation of tRNA as well as the maturation of the 5S and 23S rRNA domains.

Editorial summary

“Ribonuclease T” enters the record as class of enzymes. Crown Archives preserves that source wording while asking what Ribonuclease, Class and enzymes can confirm, complicate or overturn.

Editorial reviewA concise reference frame for defining the subject, testing terminology and identifying the institution closest to the evidence. The current 294-word lead offers orientation but no explicit four-digit date, so chronology should not be assumed. The selected authority fields contribute no independent date. Its strongest next move is a source search built around Ribonuclease, Class and enzymes.
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“Ribonuclease T” is worth following because a concise public description often conceals a longer documentary argument. Here, Ribonuclease, Class and enzymes provides the most credible route into that argument.

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Named sources, stable identifiers and responsible institutions provide the strongest route from overview to verifiable evidence. The source revision retrieved here is dated Oct 26, 2025. The linked authority identifier is Q19059632. None of the 0 selected statements returned an explicit reference.

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Source & attribution

This entry incorporates text from Ribonuclease T” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.