Dionne

From OpenWetWare
Jump to navigationJump to search

About Us       Protocols &c.       Lab Members       Publications       Contact       Links


Welcome to the Dionne lab!

That is to say, Marc Dionne's lab, at Imperial College London; not to be confused with any other Dionne lab.

We are interested in the ways in which host genotype affects the biology of bacterial infection. Drosophila melanogaster is our animal model of choice.

Work in the lab has been funded by the Biotechnology and Biological Sciences Research Council, the Wellcome Trust, and the Medical Research Council.

A BBSRC-funded postdoctoral position is available in the lab! If you're interested, get in touch, or apply here!

Metabolic-immune interaction and host genetics in infection

It has been known for centuries that chronic infections cause systemic metabolic disruption, but it is fundamentally unclear why and how these events are linked. Does metabolic disruption somehow facilitate the host response to infection? If so, how? We address these fundamental biological questions by analyzing pathogenic infections and their consequences in the fruit-fly Drosophila melanogaster. We use classical Drosophila genetics, computational analysis and modeling of gene expression, biochemistry, and intravital microscopy to probe the metabolic-immune interface.

One pathogen of particular interest to us is Mycobacterium marinum. We have previously shown that flies infected with M. marinum exhibit progressive loss of metabolic stores accompanied by mild hyperglycemia. We have shown that these effects are caused, in part, by systemic disruption of signaling via the anabolic effector kinases Akt and p70 S6 kinase. The transcription factor MEF2 responds to nutrient signals to regulate expression of both immune effectors and anabolic enzymes. Remarkably, though MEF2 promotes the expression of both groups of genes, its choice of targets is regulated by a conserved phosphorylation that alters its affinity for the TATA binding protein. It appears that the disruption of anabolic kinase activity may be required to permit MEF2 to drive the antibacterial response. This work has recently been published in Cell.

Ongoing work continues to explore other metabolic inputs into MEF2, other targets of MEF2 in its two discrete physiological states, and the pathways by which infection disrupts anabolic kinase activity.

Cytokines and cytokine signalling

In the course of screening for mutants with defective responses to M. marinum, we find a lot of molecules and pathways that end up being involved in cytokine signalling and its consequences. Cytokines regulate the realized immune response of the fly, much as they do in mammals; they also can be significant direct drivers of pathology due to effects on immune and nonimmune target tissues. However, very little is known about the biology of cytokines in Drosophila melanogaster, especially in the context of bacterial infections.

Some time back, we showed that two different TGF-betas regulate fly immunity, each inhibiting a specific arm of the immune response, and each being produced by only a subset of phagocytes. Check it out!

We've also done some exciting work in collaboration with Frederic Geissmann's lab on the role of JAK-STAT signalling in flies on a high-fat diet; you can read about it here. We continue to work on the roles of this pathway in Mycobacterium marinum infection and in muscle physiology—we hope to be able to say more about these soon.

<wikionly>

Recent updates to the lab wiki

List of abbreviations:
N
This edit created a new page (also see list of new pages)
m
This is a minor edit
b
This edit was performed by a bot
(±123)
The page size changed by this number of bytes

16 May 2024

15 May 2024

     07:48  (Upload log) [Raulemm‎; Michael S Beauchamp‎]
     
07:48 Michael S Beauchamp talk contribs uploaded File:Yu Lado Zhang Magnotti Beauchamp Frontiers in Neuroscience 2024.pdf
     
06:53 Raulemm talk contribs uploaded File:Careto CSL.png(Raúl Montañez)
     07:47  Beauchamp:Publications‎‎ 4 changes history +102 [Michael S Beauchamp‎ (4×)]
     
07:47 (cur | prev) 0 Michael S Beauchamp talk contribs
     
07:47 (cur | prev) +2 Michael S Beauchamp talk contribs
     
07:46 (cur | prev) +1 Michael S Beauchamp talk contribs
     
07:46 (cur | prev) +99 Michael S Beauchamp talk contribs
N    07:14  User:Raulemm diffhist +3,244 Raulemm talk contribs (A hallmark of my scientific endeavors is a seamless blend of multidisciplinarity, encompassing a wide range of approaches and research areas, including rare disease, developmental biology, biomedical engineering, neurobiology, and ecology. I excel at striking a harmonious balance between experimental and theoretical approaches, enabling me to dissect complex problems with precision, develop mathematical models, design the most appropriate experiments, and meticulously compare results to identify)

14 May 2024

     15:35  (User creation log) [Yar‎ (5×)]
     
15:35 User account Yangfeng talk contribs was created by Yar talk contribs and password was sent by email ‎
     
15:34 User account Raulemm talk contribs was created by Yar talk contribs and password was sent by email ‎
     
15:34 User account Daryl Goad talk contribs was created by Yar talk contribs and password was sent by email ‎
     
15:33 User account Debshila talk contribs was created by Yar talk contribs and password was sent by email ‎
     
15:33 User account Engrmdraselsarker talk contribs was created by Yar talk contribs and password was sent by email ‎
     13:33  CHIP:Talks diffhist −88 Gabor Balazsi talk contribs
     07:58  Xu lab diffhist +255 Peisheng Xu talk contribs
     06:06  Xu lab:Lab Members diffhist +109 Peisheng Xu talk contribs (→‎Graduate Student)

13 May 2024

     16:54 Upload log David Altman talk contribs uploaded File:Hornbeck WUbites Spring 2024.pdf
     16:54  Altman:WUbites diffhist +137 David Altman talk contribs (→‎WUbites)
     16:16  User:Massih Forootan‎‎ 2 changes history −73 [Massih Forootan‎ (2×)]
     
16:16 (cur | prev) +55 Massih Forootan talk contribs (→‎Professional Experience)
     
16:10 (cur | prev) −128 Massih Forootan talk contribs (→‎Link to Publications)
     13:39  Beauchamp:Publications‎‎ 3 changes history +123 [Michael S Beauchamp‎ (3×)]
     
13:39 (cur | prev) 0 Michael S Beauchamp talk contribs
     
13:39 (cur | prev) −6 Michael S Beauchamp talk contribs
     
13:33 (cur | prev) +129 Michael S Beauchamp talk contribs
     08:33  RAVE‎‎ 3 changes history +860 [Zhengjia‎ (3×)]
     
08:33 (cur | prev) +830 Zhengjia talk contribs
     
08:27 (cur | prev) +29 Zhengjia talk contribs
     
08:14 (cur | prev) +1 Zhengjia talk contribs
     06:12  Xu lab:Publications‎‎ 2 changes history +525 [Peisheng Xu‎ (2×)]
     
06:12 (cur | prev) +288 Peisheng Xu talk contribs
     
06:02 (cur | prev) +237 Peisheng Xu talk contribs

12 May 2024

11 May 2024

10 May 2024

     15:04  Karas Lab:Contact diffhist +76 Aclesage talk contribs
     15:02  Karas Lab diffhist +505 Aclesage talk contribs
     14:55  Beauchamp:iELVIS‎‎ 2 changes history 0 [Zhou.oliverfr‎ (2×)]
     
14:55 (cur | prev) −3 Zhou.oliverfr talk contribs Tag: Manual revert
     
14:55 (cur | prev) +3 Zhou.oliverfr talk contribs
     14:39  Altman:WUbites‎‎ 2 changes history +258 [David Altman‎ (2×)]
     
14:39 (cur | prev) 0 David Altman talk contribs
     
14:36 (cur | prev) +258 David Altman talk contribs (→‎WUbites)
     14:36 Upload log David Altman talk contribs uploaded File:Robbins WUbites Spring 2024.pdf
     13:19  UA Biophysics: Spectrofluorometer Instructions ESP diffhist −433 Elizabeth Suesca talk contribs
     10:23  Ernesto-Perez-Rueda:Publications diffhist +262 Ernesto Perez-Rueda talk contribs

</wikionly>

<nonwikionly> This page was created using Open Wetware.</nonwikionly>