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Bacterial Approaches for Assembling Iron-Sulfur Proteins

期刊

MBIO
卷 12, 期 6, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/mBio.02425-21

关键词

bacteria; iron-sulfur cluster; iron; sulfide; SUF; ISC; NIF; genetic regulation; iron regulation; iron utilization; metalloproteins; metalloregulation; sulfur

资金

  1. Pasteur Institute
  2. National Science Foundation [1750624]
  3. [ANR-10-LABX-62-IBEID]
  4. Direct For Biological Sciences
  5. Div Of Molecular and Cellular Bioscience [1750624] Funding Source: National Science Foundation

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Building iron-sulfur clusters and assembling Fe-S proteins are crucial for sustaining life, with genes coding for these proteins found in almost every sequenced genome. Defective assembly of Fe-S proteins can lead to cell death or metabolic defects.
Building iron-sulfur (Fe-S) clusters and assembling Fe-S proteins are essential actions for life on Earth. The three processes that sustain life, photosynthesis, nitrogen fixation, and respiration, require Fe-S proteins. Genes coding for Fe-S proteins can be found in nearly every sequenced genome. Fe-S proteins have a wide variety of functions, and therefore, defective assembly of Fe-S proteins results in cell death or global metabolic defects. Compared to alternative essential cellular processes, there is less known about Fe-S cluster synthesis and Fe-S protein maturation. Moreover, new factors involved in Fe-S protein assembly continue to be discovered. These facts highlight the growing need to develop a deeper biological understanding of Fe-S cluster synthesis, holo-protein maturation, and Fe-S cluster repair. Here, we outline bacterial strategies used to assemble Fe-S proteins and the genetic regulation of these processes. We focus on recent and relevant findings and discuss future directions, including the proposal of using Fe-S protein assembly as an anti-pathogen target.

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