Metabolism of saturated fatty acids by Paramecium tetraurelia.
نویسندگان
چکیده
Paramecium requires oleate for growth. The phospholipids of the ciliate contain high concentrations of palmitate and 18- and 20-carbon unsaturated fatty acids. We previously showed that radiolabeled oleate is desaturated and elongated to provide these 18- and 20-carbon unsaturated acids. We now report on saturated fatty acid (SFA) metabolism in Paramecium. Radiolabeled palmitate and stearate were incorporated directly into cellular phospholipids with little or no desaturation and/or elongation. Radiolabeled acetate, malonate, pyruvate, citrate, or glucose added to cultures were not incorporated into cellular phospholipid fatty acids indicating that these exogenously supplied putative precursors were not utilized for fatty acid synthesis by Paramecium. Radiolabel from octanoate or hexanoate appeared in fatty acyl groups of phospholipids, possibly by partial beta-oxidation and reincorporation of the label. Under oleate-free conditions in which cultures do not grow, radiolabel from these shorter chain SFA were beta-oxidized and preferentially used for the formation of arachidonate, the major end-product of fatty acid synthesis in Paramecium. Cerulenin inhibited culture growth apparently by inhibiting de novo fatty acid synthesis. Cerulenin-treated cells did not incorporate radioactivity from [1-14C]octanoate into esterified palmitate. However, total saponifiable phospholipid fatty acids, including SFA, per cell increased under these conditions.
منابع مشابه
Correlation between thermotolerance and membrane properties in Paramecium aurelia.
The relationship between thermotolerance and membrane properties was studied by using a ciliated protozoan, Paramecium aurelia. P. aurelia is a complex of sibling species termed ;syngens' whose cell morphology appear similar on microscopic examination. From the comparison of tolerance to increasing temperature among 14 syngens of P. aurelia, we selected syngens 2 and 3 as low thermotolerant exa...
متن کاملA forward genetic screen reveals essential and non-essential RNAi factors in Paramecium tetraurelia
In most eukaryotes, small RNA-mediated gene silencing pathways form complex interacting networks. In the ciliate Paramecium tetraurelia, at least two RNA interference (RNAi) mechanisms coexist, involving distinct but overlapping sets of protein factors and producing different types of short interfering RNAs (siRNAs). One is specifically triggered by high-copy transgenes, and the other by feedin...
متن کاملComparison of Adipose tissue fatty acide in CAD and non-CAD patients
since long term dietary fatty acide intake is reflected in the fatty acide composition of Adipose tissue, this study was aimed to compare the adippose tissue fatty acide profile of angiography documented CAD (test)and non-CAD(control) patients.the first group were 25 patients who underwent coronary artery bypass graft surgery in open heart surgery section of Shahid Beheshti hospital of Kerman...
متن کاملExtremely short 20-33 nucleotide introns are the standard length in Paramecium tetraurelia.
Paramecium tetraurelia has the shortest known introns as its standard intron length. Sequenced introns vary between 20 and 33 nucleotides in length. The intron sequences were discovered in genomic sequences coding for a variety of different proteins, including phosphatases, kinases, and low-molecular weight GTP-binding proteins. All intron sequences begin with the conserved dinucleotide GT and ...
متن کاملStudy of un-saturated fatty acids content in Ocimum basilicum L.
Background & Aim: Ocimum basilicum L. is belong to the Lamiaceae family which is cultivated as a culinary, industrial and medicinal plants in some countries from thousands years ago. The seed of this plant is rich in poly un-saturated fatty acids (PUFA) and produced a large amount of mucilage. Experimental: The oil of seed was extracted separately and converted to fatty acids...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of lipid research
دوره 28 12 شماره
صفحات -
تاریخ انتشار 1987