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Episode 3316      
Episode 3317

ST motif
Wed, 2026-Jun-03 01:20 UTC
Length - 2:35

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Welcome to random Wiki of the Day, your journey through Wikipedia's vast and varied content, one random article at a time.

The random article for Wednesday, 3 June 2026, is ST motif.

The ST motif is a commonly occurring feature in proteins and polypeptides. It consists of four or five amino acid residues with either serine or threonine as the first residue (residue i). It is defined by two internal hydrogen bonds. One is between the side chain oxygen of residue i and the main chain NH of residue i + 2 or i + 3; the other is between the main chain oxygen of residue i and the main chain NH of residue i + 3 or i + 4. Two websites are available for finding and examining ST motifs in proteins, Motivated Proteins: and PDBeMotif.

When one of the hydrogen bonds is between the main chain oxygen of residue i and the side chain NH of residue i + 3 the motif incorporates a beta turn. When one of the hydrogen bonds is between the side chain oxygen of residue i and the main chain NH of residue i + 2 the motif incorporates an ST turn.

As with ST turns, a significant proportion of ST motifs occur at the N-terminus of an alpha helix with the serine or threonine as the N cap residue. They have thus often been described as helix capping features.

A related motif is the asx motif which has aspartate or asparagine as the first residue.

Two well conserved threonines at α-helical N-termini occur as ST motifs and form part of the characteristic nucleotide binding sites of SF1 and SF2 type DNA and RNA helicases.

It has been suggested that the sequences SPXX or STXX are frequently found at DNA-binding sites and also that they are recognized as substrates by some protein kinases. Structural studies of polypeptides indicate that such tetrapeptides can adopt the hydrogen bonding pattern of the ST motif.

This recording reflects the Wikipedia text as of 01:20 UTC on Wednesday, 3 June 2026.

For the full current version of the article, see ST motif on Wikipedia.

This podcast uses content from Wikipedia under the Creative Commons Attribution-ShareAlike License.

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Until next time, I'm generative Tiffany.

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