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- Robustness of the Process of Nucleoid Exclusion of Protein Aggregates in Escherichia coliRobustness of the Process of Nucleoid Exclusion of Protein Aggregates in Escherichia coli
Robustness of the Process of Nucleoid Exclusion of Protein Aggregates in Escherichia coli
By
Neeli-Venkata, R (Neeli-Venkata, Ramakanth) ; Martikainen, A (Martikainen, Antti) ; Gupta, A (Gupta, Abhishekh) ; Gonçalves, N (Goncalves, Nadia) ; Fonseca, J (Fonseca, Jose) ; Ribeiro, AS (Ribeiro, Andre S.) Author | Web of Science ResearcherID | ORCID Number |
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Gupta, Abhishekh | I-9114-2019 | |
Neeli-Venkata, Ramakanth | A-3803-2016 | https://orcid.org/0000-0003-0844-8320 |
Ribeiro, Andre | G-4294-2014 | https://orcid.org/0000-0002-7255-5211 |
Gupta, Abhishekh | https://orcid.org/0000-0002-0212-3958 | |
Moreira Goncalves, Nadia | https://orcid.org/0000-0002-4580-2969 | |
Fonseca, Jose | C-9497-2013 | https://orcid.org/0000-0001-7173-7374 |
Source
JOURNAL OF BACTERIOLOGY
Publisher name
AMER SOC MICROBIOLOGYJCR Category | Category Quartile |
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MICROBIOLOGY in SCIE edition | Q3 |
JCI Category | Category Rank | Category Quartile |
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Volume
198Issue
6Page
898-906DOI
10.1128/JB.00848-15Published
MAR 2016Indexed
2016-03-01Document Type
ArticleAbstract
Escherichia coli segregates protein aggregates to the poles by nucleoid exclusion. Combined with cell divisions, this generates heterogeneous aggregate distributions in subsequent cell generations. We studied the robustness of this process with differing medium richness and antibiotics stress, which affect nucleoid size, using multimodal, time-lapse microscopy of live cells expressing both a fluorescently tagged chaperone (IbpA), which identifies in vivo the location of aggregates, and HupA-mCherry, a fluorescent variant of a nucleoid-associated protein. We find that the relative sizes of the nucleoid's major and minor axes change widely, in a positively correlated fashion, with medium richness and antibiotic stress. The aggregate's distribution along the major cell axis also changes between conditions and in agreement with the nucleoid exclusion phenomenon. Consequently, the fraction of aggregates at the midcell region prior to cell division differs between conditions, which will affect the degree of asymmetries in the partitioning of aggregates between cells of future generations. Finally, from the location of the peak of anisotropy in the aggregate displacement distribution, the nucleoid relative size, and the spatiotemporal aggregate distribution, we find that the exclusion of detectable aggregates from midcell is most pronounced in cells with mid-sized nucleoids, which are most common under optimal conditions. We conclude that the aggregate management mechanisms of E. coli are significantly robust but are not immune to stresses due to the tangible effect that these have on nucleoid size.
IMPORTANCE
Escherichia coli segregates protein aggregates to the poles by nucleoid exclusion. From live single-cell microscopy studies of the robustness of this process to various stresses known to affect nucleoid size, we find that nucleoid size and aggregate preferential locations change concordantly between conditions. Also, the degree of influence of the nucleoid on aggregate positioning differs between conditions, causing aggregate numbers at midcell to differ in cell division events, which will affect the degree of asymmetries in the partitioning of aggregates between cells of future generations. Finally, we find that aggregate segregation to the cell poles is most pronounced in cells with mid-sized nucleoids. We conclude that the energy-free process of the midcell exclusion of aggregates partially loses effectiveness under stressful conditions.
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ROR ID
https://ror.org/033003e23Categories/ Classification
Research Areas
MicrobiologyCitation Topics
1 Clinical & Life SciencesSustainable Development Goals
03 Good Health and Well-beingWeb of Science Categories
MicrobiologyLanguage
EnglishAccession Number
WOS:000371526200005PubMed ID
26728194ISSN
0021-9193eISSN
1098-5530IDS Number
DF7GOCitation Network
In Web of Science Core Collection
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Last 180 Days
Since 2013
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