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Metabolic heterogeneity confers differences in melanoma metastatic potential 期刊论文
NATURE, 2020, 577 (7788) : 115-+
作者:  Tasdogan, Alpaslan;  Faubert, Brandon;  Ramesh, Vijayashree;  Ubellacker, Jessalyn M.;  Shen, Bo;  Solmonson, Ashley;  Murphy, Malea M.;  Gu, Zhimin;  Gu, Wen;  Martin, Misty;  Kasitinon, Stacy Y.;  Vandergriff, Travis;  Mathews, Thomas P.;  Zhao, Zhiyu;  Schadendorf, Dirk;  DeBerardinis, Ralph J.;  Morrison, Sean J.
收藏  |  浏览/下载:14/0  |  提交时间:2020/07/03

Metastasis requires cancer cells to undergo metabolic changes that are poorly understood(1-3). Here we show that metabolic differences among melanoma cells confer differences in metastatic potential as a result of differences in the function of the MCT1 transporter. In vivo isotope tracing analysis in patient-derived xenografts revealed differences in nutrient handling between efficiently and inefficiently metastasizing melanomas, with circulating lactate being a more prominent source of tumour lactate in efficient metastasizers. Efficient metastasizers had higher levels of MCT1, and inhibition of MCT1 reduced lactate uptake. MCT1 inhibition had little effect on the growth of primary subcutaneous tumours, but resulted in depletion of circulating melanoma cells and reduced the metastatic disease burden in patient-derived xenografts and in mouse melanomas. In addition, inhibition of MCT1 suppressed the oxidative pentose phosphate pathway and increased levels of reactive oxygen species. Antioxidants blocked the effects of MCT1 inhibition on metastasis. MCT1(high) and MCT1(-/low) cells from the same melanomas had similar capacities to form subcutaneous tumours, but MCT1(high) cells formed more metastases after intravenous injection. Metabolic differences among cancer cells thus confer differences in metastatic potential as metastasizing cells depend on MCT1 to manage oxidative stress.


  
Feeding-dependent VIP neuron-ILC3 circuit regulates the intestinal barrier 期刊论文
NATURE, 2020, 579 (7800) : 575-+
作者:  Bhaduri, Aparna;  Andrews, Madeline G.;  Mancia Leon, Walter;  Jung, Diane;  Shin, David;  Allen, Denise;  Jung, Dana;  Schmunk, Galina;  Haeussler, Maximilian;  Salma, Jahan;  Pollen, Alex A.;  Nowakowski, Tomasz J.;  Kriegstein, Arnold R.
收藏  |  浏览/下载:37/0  |  提交时间:2020/07/03

The intestinal mucosa serves both as a conduit for the uptake of food-derived nutrients and microbiome-derived metabolites, and as a barrier that prevents tissue invasion by microorganisms and tempers inflammatory responses to the myriad contents of the lumen. How the intestine coordinates physiological and immune responses to food consumption to optimize nutrient uptake while maintaining barrier functions remains unclear. Here we show in mice how a gut neuronal signal triggered by food intake is integrated with intestinal antimicrobial and metabolic responses that are controlled by type-3 innate lymphoid cells (ILC3)(1-3). Food consumption rapidly activates a population of enteric neurons that express vasoactive intestinal peptide (VIP)(4). Projections of VIP-producing neurons (VIPergic neurons) in the lamina propria are in close proximity to clusters of ILC3 that selectively express VIP receptor type 2 (VIPR2  also known as VPAC2). Production of interleukin (IL)-22 by ILC3, which is upregulated by the presence of commensal microorganisms such as segmented filamentous bacteria(5-7), is inhibited upon engagement of VIPR2. As a consequence, levels of antimicrobial peptide derived from epithelial cells are reduced but the expression of lipid-binding proteins and transporters is increased(8). During food consumption, the activation of VIPergic neurons thus enhances the growth of segmented filamentous bacteria associated with the epithelium, and increases lipid absorption. Our results reveal a feeding- and circadian-regulated dynamic neuroimmune circuit in the intestine that promotes a trade-off between innate immune protection mediated by IL-22 and the efficiency of nutrient absorption. Modulation of this pathway may therefore be effective for enhancing resistance to enteropathogens(2,3,9) and for the treatment of metabolic diseases.


Feeding controls a neuroimmune circuit comprising VIP-producing neurons and type-3 innate lymphoid cells that helps to regulate the efficiency of nutrient uptake and IL-22-mediated immune protection in the intestine.


  
Distance from the trunk and depth of uptake of labelled nitrate for dominant and suppressed trees in Brazilian Eucalyptus plantations: Consequences for fertilization practices 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2019, 447: 95-104
作者:  Pinheiro, Rafael Costa;  Bouillet, Jean-Pierre;  Bordron, Bruno;  Alo, Livia Lanzi;  Costa, Vladimir Eliodoro;  Alvares, Clayton Alcarde;  Van den Meersche, Karel;  Stape, Jose Luiz;  Guerrini, Irae Amaral;  Laclau, Jean-Paul
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
Nutrient uptake  Water uptake  Fine roots  N-15  Eucalypt plantations  Brazil  
Fertilization increases the functional specialization of fine roots in deep soil layers for young Eucalyptus grandis trees 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2019, 431: 6-16
作者:  Bordron, B.;  Robin, A.;  Oliveira, I. R.;  Guillemot, J.;  Laclau, J. P.;  Jourdan, C.;  Nouvellon, Y.;  Abreu-Junior, C. H.;  Trivelin, P. C. O.;  Goncalves, J. L. M.;  Plassard, C.;  Bouillet, J. P.
收藏  |  浏览/下载:11/0  |  提交时间:2019/04/09
Deep fine roots  N-15  Nutrient uptake potential  Rubidium  Sandy tropical soil  Strontium  
Responses of seedling performance to altered seasonal precipitation in a secondary tropical forest, southern China 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2018, 410: 27-34
作者:  Wang, Jun;  Sun, Zhongyu;  Hui, Dafeng;  Yang, Long;  Wang, Faming;  Liu, Nan;  Ren, Hai
收藏  |  浏览/下载:9/0  |  提交时间:2019/04/09
Biomass accumulation  Extended dry season  Forest regeneration  Increased precipitation  Nutrient uptake  
Mycorrhizal fungi enhance plant nutrient acquisition and modulate nitrogen loss with variable water regimes 期刊论文
GLOBAL CHANGE BIOLOGY, 2018, 24 (1) : E171-E182
作者:  Bowles, Timothy M.;  Jackson, Louise E.;  Cavagnaro, Timothy R.
收藏  |  浏览/下载:10/0  |  提交时间:2019/04/09
arbuscular mycorrhizal fungi  climate change  drought  nitrogen leaching  nutrient uptake  
Biodiversity and ecosystem functioning in food webs: the vertical diversity hypothesis 期刊论文
ECOLOGY LETTERS, 2018, 21 (1) : 9-20
作者:  Wang, Shaopeng;  Brose, Ulrich
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
allometry  complex food webs  ecological pyramids  nutrient supply  nutrient uptake  primary production  size distribution  trophic level  vertical diversity  
Scaling Dissolved Nutrient Removal in River Networks: A Comparative Modeling Investigation 期刊论文
WATER RESOURCES RESEARCH, 2017, 53 (11)
作者:  Ye, Sheng;  Reisinger, Alexander J.;  Tank, Jennifer L.;  Baker, Michelle A.;  Hall, Robert O.;  Rosi, Emma J.;  Sivapalan, Murugesu
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
nutrient uptake  rivers  hydrology  biogeochemistry  network modeling  field experiments  scale effects