Literature DB >> 20807207

The MYST family histone acetyltransferase regulates gene expression and cell cycle in malaria parasite Plasmodium falciparum.

Jun Miao1, Qi Fan, Long Cui, Xiaolian Li, Haiyan Wang, Gang Ning, Joseph C Reese, Liwang Cui.   

Abstract

Histone lysine acetylation, normally associated with euchromatin and active genes, is regulated by different families of histone acetyltransferases (HATs). A single Plasmodium falciparum MYST (PfMYST) HAT was expressed as a long and a short version in intraerythrocytic stages. Whereas the recombinant PfMYST expressed in prokaryotes and insect cells did not show HAT activity, recombinant PfMYST purified from the parasites exhibited a predilection to acetylate histone H4 in vitro at K5, K8, K12 and K16. Tagging PfMYST with the green fluorescent protein at the C-terminus showed that PfMYST protein was localized in both the nucleus and cytoplasm. Consistent with the importance of H4 acetylation in var gene expression, PfMYST was recruited to the active var promoter. Attempts to disrupt PfMYST were not successful, suggesting that PfMYST is essential for asexual intraerythrocytic growth. However, overexpression of the long, active or a truncated, non-active version of PfMYST by stable integration of the expression cassette in the parasite genome resulted in changes of H4 acetylation and cell cycle progression. Furthermore, parasites with PfMYST overexpression showed changes in sensitivity to DNA-damaging agents. Collectively, this study showed that PfMYST plays important roles in cellular processes such as gene activation, cell cycle control and DNA repair.
© 2010 Blackwell Publishing Ltd.

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Year:  2010        PMID: 20807207      PMCID: PMC2978264          DOI: 10.1111/j.1365-2958.2010.07371.x

Source DB:  PubMed          Journal:  Mol Microbiol        ISSN: 0950-382X            Impact factor:   3.501


  77 in total

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  24 in total

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Review 3.  Plasmodium falciparum R2TP complex: driver of parasite Hsp90 function.

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4.  Sex-Specific Biology of the Human Malaria Parasite Revealed from the Proteomes of Mature Male and Female Gametocytes.

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Review 5.  Chromatin modifications, epigenetics, and how protozoan parasites regulate their lives.

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6.  Inhibition of PfMYST Histone Acetyltransferase Activity Blocks Plasmodium falciparum Growth and Survival.

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Review 7.  Post-translational modifications as key regulators of apicomplexan biology: insights from proteome-wide studies.

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Review 9.  Post-translational protein modifications in malaria parasites.

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