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Cadmium stress dictates central carbon flux and alters membrane composition in Streptococcus pneumoniae.


ABSTRACT: Metal ion homeostasis is essential for all forms of life. However, the breadth of intracellular impacts that arise upon dysregulation of metal ion homeostasis remain to be elucidated. Here, we used cadmium, a non-physiological metal ion, to investigate how the bacterial pathogen, Streptococcus pneumoniae, resists metal ion stress and dyshomeostasis. By combining transcriptomics, metabolomics and metalloproteomics, we reveal that cadmium stress dysregulates numerous essential cellular pathways including central carbon metabolism, lipid membrane biogenesis and homeostasis, and capsule production at the transcriptional and/or functional level. Despite the breadth of cellular pathways susceptible to metal intoxication, we show that S. pneumoniae is able to maintain viability by utilizing cellular pathways that are predominately metal-independent, such as the pentose phosphate pathway to maintain energy production. Collectively, this work provides insight into the cellular processes impacted by cadmium and how resistance to metal ion toxicity is achieved in S. pneumoniae.

SUBMITTER: Neville SL 

PROVIDER: S-EPMC7678824 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Cadmium stress dictates central carbon flux and alters membrane composition in Streptococcus pneumoniae.

Neville Stephanie L SL   Eijkelkamp Bart A BA   Lothian Amber A   Paton James C JC   Roberts Blaine R BR   Rosch Jason W JW   McDevitt Christopher A CA  

Communications biology 20201119 1


Metal ion homeostasis is essential for all forms of life. However, the breadth of intracellular impacts that arise upon dysregulation of metal ion homeostasis remain to be elucidated. Here, we used cadmium, a non-physiological metal ion, to investigate how the bacterial pathogen, Streptococcus pneumoniae, resists metal ion stress and dyshomeostasis. By combining transcriptomics, metabolomics and metalloproteomics, we reveal that cadmium stress dysregulates numerous essential cellular pathways in  ...[more]

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