Affiliation:
1. Friedrich-Schiller-Universität Jena, Department Pharmaceutical Microbiology at the Hans-Knöll-Institute, Jena, Germany
Abstract
ABSTRACT
A key step in fungal
l
-lysine biosynthesis is catalyzed by adenylate-forming
l
-α-aminoadipic acid reductases, organized in domains for adenylation, thiolation, and the reduction step. However, the genomes of numerous ascomycetes and basidiomycetes contain an unexpectedly large number of additional genes encoding similar but functionally distinct enzymes. Here, we describe the functional
in vitro
characterization of four reductases which were heterologously produced in
Escherichia coli
. The
Ceriporiopsis subvermispora
serine reductase Nps1 features a terminal ferredoxin-NADP
+
reductase (FNR) domain and thus belongs to a hitherto undescribed class of fungal multidomain enzymes. The second major class is characterized by the canonical terminal short-chain dehydrogenase/reductase domain and represented by
Ceriporiopsis subvermispora
Nps3 as the first biochemically characterized
l
-α-aminoadipic acid reductase of basidiomycete origin.
Aspergillus flavus
l
-tyrosine reductases LnaA and LnbA are members of a distinct phylogenetic clade. Phylogenetic analysis supports the view that fungal adenylate-forming reductases are more diverse than previously recognized and belong to four distinct classes.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
33 articles.
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