<p><i>Actinosynnema mirum</i> DSM 43827 is a bacterium from the small genus <i>Actinosynnema</i> within the rapidly growing actinomycete family <i>Pseudonocardiaceae</i> (Land M et al.&#xa0;Stand Genomic Sci 1:46–53&#xa0;<CitationRef CitationID="CR25">2009</CitationRef>). Despite its diverse repertoire of specialized metabolite biosynthetic gene clusters (BGCs), the potential of <i>A. mirum</i> for production of bioactive molecules is not fully explored. Here, we used a heterologous expression approach to gain deeper insight into this issue. In this work we report that expression of in silico predicted BGC#4 from <i>A. mirum</i> in <i>S. albus</i> Del14 and <i>S. lividans</i> ΔYA9 led to production of several prenylated derivatives of tyrosine. Their most likely structures, according to MS and MS/MS data, agreed with 4-<i>O</i>-prenyl-(<span>l</span>)-tyrosine and its N-acetyl derivative, previously described in lichen-forming fungi (Iacovelli R et al.&#xa0;J Nat Prod 87:2243–2254&#xa0;<CitationRef CitationID="CR19">2024</CitationRef>). Further experiments confirm the production of the aforementioned compounds is governed by a single structural gene, <i>amir_2071</i> for prenyltransferase of dimethylallyltryptophan synthase (DMATS) superfamily, whose homologs are abundant in bacterial genomes.</p>

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Gene amir_2071 of Actinosynnema mirum DSM 43827 encodes a dimethylallyltryptophan synthase superfamily protein responsible for the production of prenylated tyrosine

  • Sofiia Melnyk,
  • Yuriy Rebets,
  • Dmytro Bratiichuk,
  • Andriy Luzhetskyy,
  • Bohdan Ostash

摘要

Actinosynnema mirum DSM 43827 is a bacterium from the small genus Actinosynnema within the rapidly growing actinomycete family Pseudonocardiaceae (Land M et al. Stand Genomic Sci 1:46–53 2009). Despite its diverse repertoire of specialized metabolite biosynthetic gene clusters (BGCs), the potential of A. mirum for production of bioactive molecules is not fully explored. Here, we used a heterologous expression approach to gain deeper insight into this issue. In this work we report that expression of in silico predicted BGC#4 from A. mirum in S. albus Del14 and S. lividans ΔYA9 led to production of several prenylated derivatives of tyrosine. Their most likely structures, according to MS and MS/MS data, agreed with 4-O-prenyl-(l)-tyrosine and its N-acetyl derivative, previously described in lichen-forming fungi (Iacovelli R et al. J Nat Prod 87:2243–2254 2024). Further experiments confirm the production of the aforementioned compounds is governed by a single structural gene, amir_2071 for prenyltransferase of dimethylallyltryptophan synthase (DMATS) superfamily, whose homologs are abundant in bacterial genomes.