Structural diversity of cysteine desulfurases involved in iron-sulfur cluster biosynthesis

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Abstract

Cysteine desulfurases are pyridoxal-5′-phosphate (PLP)-dependent enzymes that mobilize sulfur derived from the L-cysteine substrate to the partner sulfur acceptor proteins. Three cysteine desulfurases, IscS, NifS, and SufS, have been identified in ISC, NIF, and SUF/SUF-like systems for iron-sulfur (Fe-S) cluster biosynthesis, respectively. These cysteine desulfurases have been investigated over decades, providing insights into shared/distinct catalytic processes based on two types of enzymes (type I: IscS and NifS, type II: SufS). This review summarizes the insights into the structural/functional varieties of bacterial and eukaryotic cysteine desulfurases involved in Fe-S cluster biosynthetic systems. In addition, an inactive cysteine desulfurase IscS paralog, which contains pyridoxamine-5'-phosphate (PMP), instead of PLP, is also described to account for its hypothetical function in Fe-S cluster biosynthesis involving this paralog. The structural basis for cysteine desulfurase functions will be a stepping stone towards understanding the diversity and evolution of Fe-S cluster biosynthesis.

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Fujishiro, T., Nakamura, R., Kunichika, K., & Takahashi, Y. (2022). Structural diversity of cysteine desulfurases involved in iron-sulfur cluster biosynthesis. Biophysics and Physicobiology. Biophysical Society of Japan. https://doi.org/10.2142/biophysico.bppb-v19.0001

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