Literature DB >> 15701787

Multiple metabolic roles for the nonphotosynthetic plastid of the green alga Prototheca wickerhamii.

Tudor Borza1, Cristina E Popescu, Robert W Lee.   

Abstract

The presence of plastids in diverse eukaryotic lineages that have lost the capacity for photosynthesis is well documented. The metabolic functions of such organelles, however, are poorly understood except in the case of the apicoplast in the Apicomplexa, a group of intracellular parasites including Plasmodium falciparum, and the plastid of the green alga Helicosporidium sp., a parasite for which the only host-free stage identified in nature so far is represented by cysts. As a first step in the reconstruction of plastid functions in a nonphotosynthetic, predominantly free-living organism, we searched for expressed sequence tags (ESTs) that correspond to nucleus-encoded plastid-targeted polypeptides in the green alga Prototheca wickerhamii. From 3,856 ESTs, we found that 71 unique sequences (235 ESTs) correspond to different nucleus-encoded putatively plastid-targeted polypeptides. The identified proteins predict that carbohydrate, amino acid, lipid, tetrapyrrole, and isoprenoid metabolism as well as de novo purine biosynthesis and oxidoreductive processes take place in the plastid of P. wickerhamii. Mg-protoporphyrin accumulation and, therefore, plastid-to-nucleus signaling might also occur in this nonphotosynthetic organism, as we identified a transcript which encodes subunit I of Mg-chelatase, the enzyme which catalyzes the first committed step in chlorophyll synthesis. Our data indicate a far more complex metabolism in P. wickerhamii's plastid compared with the metabolic pathways predicted to be located in the apicoplast of P. falciparum and the plastid of Helicosporidium sp.

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Year:  2005        PMID: 15701787      PMCID: PMC549340          DOI: 10.1128/EC.4.2.253-261.2005

Source DB:  PubMed          Journal:  Eukaryot Cell        ISSN: 1535-9786


  62 in total

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Review 3.  Tropical infectious diseases: metabolic maps and functions of the Plasmodium falciparum apicoplast.

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4.  The active site of the thioredoxin-like domain of chloroplast protein disulfide isomerase, RB60, catalyzes the redox-regulated binding of chloroplast poly(A)-binding protein, RB47, to the 5' untranslated region of psbA mRNA.

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10.  The non-photosynthetic, pathogenic green alga Helicosporidium sp. has retained a modified, functional plastid genome.

Authors:  Aurélien Tartar; Drion G Boucias
Journal:  FEMS Microbiol Lett       Date:  2004-04-01       Impact factor: 2.742

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Review 3.  The endosymbiotic origin, diversification and fate of plastids.

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Journal:  Plant Physiol       Date:  2014-02-21       Impact factor: 8.340

Review 5.  Reductive evolution of chloroplasts in non-photosynthetic plants, algae and protists.

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6.  Enzymes of the heme biosynthetic pathway in the nonphotosynthetic alga Polytomella sp.

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7.  The complete plastid genome sequence of the secondarily nonphotosynthetic alga Cryptomonas paramecium: reduction, compaction, and accelerated evolutionary rate.

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Review 8.  Niche metabolism in parasitic protozoa.

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9.  TBestDB: a taxonomically broad database of expressed sequence tags (ESTs).

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