Iron–sulfur clusters biogenesis by the SUF machinery: close to the molecular mechanism understanding
Биогенез железосерных кластеров системой SUF: близко к пониманию молекулярного механизма
2017-12-26
SCID: 54.1/mtkzwhbu
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Fe-S biogenesisSUF systemiron-sulfur clustersoxidative stresssufABCDSE operon
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Abstract (AI)
Iron-sulfur clusters (Fe-S) are amongst the most ancient and versatile inorganic cofactors in nature which are used by proteins for fundamental biological processes. Multiprotein machineries (NIF, ISC, SUF) exist for Fe-S cluster biogenesis which are mainly conserved from bacteria to human. SUF system (sufABCDSE operon) plays a general role in many bacteria under conditions of iron limitation or oxidative stress. In this mini-review, we will summarize the current understanding of the molecular mechanism of Fe-S biogenesis by SUF. The advances in our understanding of the molecular aspects of SUF originate from biochemical, biophysical and recent structural studies. Combined with recent in vivo experiments, the understanding of the Fe-S biogenesis mechanism considerably moved forward.
Key Findings
1
Biochemical, biophysical, structural, and recent in vivo studies have substantially advanced understanding of the molecular mechanism of SUF-mediated Fe-S biogenesis.
2
Current knowledge of SUF's molecular mechanism has considerably progressed but remains a subject of ongoing research summarized in this review.
3
Fe-S clusters are ancient, versatile cofactors used by proteins for fundamental biological processes.
4
Multiprotein machineries NIF, ISC, and SUF are mainly conserved from bacteria to humans for Fe-S cluster biogenesis.
5
The SUF system (sufABCDSE operon) plays a general role in bacteria particularly under iron limitation or oxidative stress.
Research Object
SUF machinery (sufABCDSE operon multiprotein system) for iron–sulfur (Fe–S) cluster biogenesis in bacteria
Research Subject
Molecular mechanism of Fe–S cluster biogenesis mediated by the SUF system, including biochemical, biophysical, structural and in vivo aspects
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2017-12-26
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