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1.
PLoS One ; 12(5): e0177062, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28542458

RESUMO

Lung cancer (LC) is the most prevalent cancer worldwide, and responsible for over 1.3 million deaths each year. Currently, LC has a low five year survival rates relative to other cancers, and thus, novel methods to screen for and diagnose malignancies are necessary to improve patient outcomes. Here, we report on a pilot-sized study to evaluate the potential of the sputum microbiome as a source of non-invasive bacterial biomarkers for lung cancer status and stage. Spontaneous sputum samples were collected from ten patients referred with possible LC, of which four were eventually diagnosed with LC (LC+), and six had no LC after one year (LC-). Of the seven bacterial species found in all samples, Streptococcus viridans was significantly higher in LC+ samples. Seven further bacterial species were found only in LC-, and 16 were found only in samples from LC+. Additional taxonomic differences were identified in regards to significant fold changes between LC+ and LC-cases, with five species having significantly higher abundances in LC+, with Granulicatella adiacens showing the highest level of abundance change. Functional differences, evident through significant fold changes, included polyamine metabolism and iron siderophore receptors. G. adiacens abundance was correlated with six other bacterial species, namely Enterococcus sp. 130, Streptococcus intermedius, Escherichia coli, S. viridans, Acinetobacter junii, and Streptococcus sp. 6, in LC+ samples only, which could also be related to LC stage. Spontaneous sputum appears to be a viable source of bacterial biomarkers which may have utility as biomarkers for LC status and stage.


Assuntos
Bactérias/genética , Biomarcadores Tumorais/genética , Neoplasias Pulmonares/microbiologia , Microbiota/genética , Escarro/microbiologia , Idoso , Feminino , Humanos , Masculino , Metagenômica/métodos , Pessoa de Meia-Idade , Projetos Piloto
2.
Elife ; 42015 Mar 27.
Artigo em Inglês | MEDLINE | ID: mdl-25815683

RESUMO

Cells use phagocytosis and macropinocytosis to internalise bulk material, which in phagotrophic organisms supplies the nutrients necessary for growth. Wildtype Dictyostelium amoebae feed on bacteria, but for decades laboratory work has relied on axenic mutants that can also grow on liquid media. We used forward genetics to identify the causative gene underlying this phenotype. This gene encodes the RasGAP Neurofibromin (NF1). Loss of NF1 enables axenic growth by increasing fluid uptake. Mutants form outsized macropinosomes which are promoted by greater Ras and PI3K activity at sites of endocytosis. Relatedly, NF1 mutants can ingest larger-than-normal particles using phagocytosis. An NF1 reporter is recruited to nascent macropinosomes, suggesting that NF1 limits their size by locally inhibiting Ras signalling. Our results link NF1 with macropinocytosis and phagocytosis for the first time, and we propose that NF1 evolved in early phagotrophs to spatially modulate Ras activity, thereby constraining and shaping their feeding structures.


Assuntos
Dictyostelium/genética , Neurofibromina 1/genética , Fagocitose/genética , Pinocitose/genética , Proteínas de Protozoários/genética , Grânulos Citoplasmáticos/genética , Grânulos Citoplasmáticos/metabolismo , Dictyostelium/crescimento & desenvolvimento , Dictyostelium/metabolismo , Endocitose/genética , Mutação , Neurofibromina 1/metabolismo , Fagossomos/genética , Fagossomos/metabolismo , Fosfatidilinositol 3-Quinases/metabolismo , Proteínas de Protozoários/metabolismo , Transdução de Sinais/genética , Proteínas ras/metabolismo
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