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1.
Malar J ; 13: 315, 2014 Aug 13.
Artigo em Inglês | MEDLINE | ID: mdl-25124718

RESUMO

BACKGROUND: Gametogenesis and fertilization play crucial roles in malaria transmission. While male gametes are thought to be amongst the simplest eukaryotic cells and are proven targets of transmission blocking immunity, little is known about their molecular organization. For example, the pathway of energy metabolism that power motility, a feature that facilitates gamete encounter and fertilization, is unknown. METHODS: Plasmodium berghei microgametes were purified and analysed by whole-cell proteomic analysis for the first time. Data are available via ProteomeXchange with identifier PXD001163. RESULTS: 615 proteins were recovered, they included all male gamete proteins described thus far. Amongst them were the 11 enzymes of the glycolytic pathway. The hexose transporter was localized to the gamete plasma membrane and it was shown that microgamete motility can be suppressed effectively by inhibitors of this transporter and of the glycolytic pathway. CONCLUSIONS: This study describes the first whole-cell proteomic analysis of the malaria male gamete. It identifies glycolysis as the likely exclusive source of energy for flagellar beat, and provides new insights in original features of Plasmodium flagellar organization.


Assuntos
Metabolismo Energético , Flagelos/fisiologia , Células Germinativas/química , Glicólise , Plasmodium berghei/química , Plasmodium berghei/fisiologia , Proteoma/análise , Animais , Feminino , Locomoção , Masculino , Camundongos
2.
PLoS One ; 8(10): e77619, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24098592

RESUMO

BACKGROUND: The resident gut flora is known to have significant impacts on the life history of the host organism. Endosymbiotic bacterial species in the Anopheles mosquito gut are potent modulators of sexual development of the malaria parasite, Plasmodium, and thus proposed as potential control agents of malaria transmission. RESULTS: Here we report a melanotic pathology in the major African malaria vector Anopheles gambiae, caused by the dominant mosquito endosymbiont Elizabethkingiameningoseptica. Transfer of melanised tissues into the haemolymph of healthy adult mosquitoes or direct haemolymph inoculation with isolated E. meningoseptica bacteria were the only means for transmission and de novo formation of melanotic lesions, specifically in the fat body tissues of recipient individuals. We show that E. meningoseptica can be vertically transmitted from eggs to larvae and that E. meningoseptica-mono-associated mosquitoes display significant mortality, which is further enhanced upon Plasmodium infection, suggesting a synergistic impact of E. meningoseptica and Plasmodium on mosquito survival. CONCLUSION: The high pathogenicity and permanent association of E. meningoseptica with An. Gambiae through vertical transmission constitute attractive characteristics towards the potential design of novel mosquito/malaria biocontrol strategies.


Assuntos
Anopheles/microbiologia , Flavobacteriaceae/patogenicidade , Trato Gastrointestinal/microbiologia , Insetos Vetores/microbiologia , Larva/microbiologia , Malária Falciparum/transmissão , Animais , Anopheles/parasitologia , Corpo Adiposo/microbiologia , Corpo Adiposo/parasitologia , Feminino , Flavobacteriaceae/fisiologia , Trato Gastrointestinal/parasitologia , Hemolinfa/microbiologia , Hemolinfa/parasitologia , Interações Hospedeiro-Parasita , Humanos , Transmissão Vertical de Doenças Infecciosas , Insetos Vetores/parasitologia , Larva/parasitologia , Malária Falciparum/parasitologia , Melaninas/metabolismo , Plasmodium falciparum/patogenicidade , Plasmodium falciparum/fisiologia , Simbiose , Zigoto/microbiologia , Zigoto/parasitologia
3.
BMC Biotechnol ; 7: 63, 2007 Sep 28.
Artigo em Inglês | MEDLINE | ID: mdl-17903251

RESUMO

BACKGROUND: RNA interference (RNAi) is a powerful method to inhibit gene expression in a sequence specific manner. RESULTS: Here, we described the development of RNAi by micro-injection of double-stranded RNA (dsRNA) in the pea aphid Acyrthosiphon pisum. Injection of dsRNA into whole aphid body induced the silencing of two marker genes with different expression patterns: the ubiquitously expressed Ap-crt genes encoding a calreticulin and the gut specific Ap-cath-L gene encoding a cathepsin-L. Time-course analysis of the silencing showed similar temporal patterns for both genes: inhibition started at 1 day after injection, reached its maximum at 5 days and stopped at 7 days. A comparable 40% decrease of gene expression was observed for Ap-crt and Ap-cath-L. CONCLUSION: The pea aphid is the first Hemipteran insect for which genome sequence will be available soon. The gene knockdown technique developed in this study will be an essential post-genomic tool for further investigations in aphidology.


Assuntos
Afídeos/genética , Genes de Insetos , Técnicas Genéticas , Interferência de RNA , Animais , Calreticulina/genética , Catepsina L , Catepsinas/genética , Clonagem Molecular , Cisteína Endopeptidases/genética , Feminino , Perfilação da Expressão Gênica , RNA de Cadeia Dupla/genética
4.
Science ; 307(5706): 82-6, 2005 Jan 07.
Artigo em Inglês | MEDLINE | ID: mdl-15637271

RESUMO

Plasmodium berghei and Plasmodium chabaudi are widely used model malaria species. Comparison of their genomes, integrated with proteomic and microarray data, with the genomes of Plasmodium falciparum and Plasmodium yoelii revealed a conserved core of 4500 Plasmodium genes in the central regions of the 14 chromosomes and highlighted genes evolving rapidly because of stage-specific selective pressures. Four strategies for gene expression are apparent during the parasites' life cycle: (i) housekeeping; (ii) host-related; (iii) strategy-specific related to invasion, asexual replication, and sexual development; and (iv) stage-specific. We observed posttranscriptional gene silencing through translational repression of messenger RNA during sexual development, and a 47-base 3' untranslated region motif is implicated in this process.


Assuntos
Genoma de Protozoário , Estágios do Ciclo de Vida , Plasmodium/crescimento & desenvolvimento , Plasmodium/genética , Proteoma/análise , Regiões 3' não Traduzidas , Animais , Anopheles/parasitologia , Biologia Computacional , Evolução Molecular , Perfilação da Expressão Gênica , Inativação Gênica , Genes de Protozoários , Malária/parasitologia , Análise de Sequência com Séries de Oligonucleotídeos , Plasmodium/metabolismo , Plasmodium berghei/genética , Plasmodium berghei/crescimento & desenvolvimento , Plasmodium berghei/metabolismo , Plasmodium chabaudi/genética , Plasmodium chabaudi/crescimento & desenvolvimento , Plasmodium chabaudi/metabolismo , Plasmodium falciparum/genética , Plasmodium falciparum/crescimento & desenvolvimento , Plasmodium falciparum/metabolismo , Plasmodium yoelii/genética , Plasmodium yoelii/crescimento & desenvolvimento , Plasmodium yoelii/metabolismo , Proteômica , Proteínas de Protozoários/análise , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , RNA de Protozoário/genética , RNA de Protozoário/metabolismo , Seleção Genética , Transcrição Gênica
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