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Journal article

A surface transporter family conveys the trypanosome differentiation signal

Abstract:
Microbial pathogens use environmental cues to trigger the developmental events needed to infect mammalian hosts or transmit to disease vectors. The parasites causing African sleeping sickness respond to citrate or cis-aconitate (CCA) to initiate life-cycle development when transmitted to their tsetse fly vector. This requires hypersensitization of the parasites to CCA by exposure to low temperature, conditions encountered after tsetse fly feeding at dusk or dawn. Here we identify a carboxylate-transporter family, PAD (proteins associated with differentiation), required for perception of this differentiation signal. Consistent with predictions for the response of trypanosomes to CCA, PAD proteins are expressed on the surface of the transmission-competent ‘stumpy-form’ parasites in the bloodstream, and at least one member is thermoregulated, showing elevated expression and surface access at low temperature. Moreover, RNA-interference-mediated ablation of PAD expression diminishes CCA-induced differentiation and eliminates CCA hypersensitivity under cold-shock conditions. As well as being molecular transducers of the differentiation signal in these parasites, PAD proteins provide the first example of a surface marker able to discriminate the transmission stage of trypanosomes in their mammalian host.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1038/nature07997

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Institution:
University of Oxford
Division:
MSD
Department:
Pathology Dunn School
Role:
Author


Publisher:
Nature Research
Journal:
Nature More from this journal
Volume:
459
Issue:
7244
Pages:
213-217
Publication date:
2009-05-14
Acceptance date:
2009-03-19
DOI:
EISSN:
1476-4687
ISSN:
0028-0836


Language:
English
Pubs id:
pubs:616080
UUID:
uuid:b03f97c2-4c58-4ddb-893a-2896a8d1d66b
Local pid:
pubs:616080
Source identifiers:
616080
Deposit date:
2018-05-09
ARK identifier:

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