Abstract

The biosynthesis of dolichol and dolichol-linked saccharide intermediates in glycoprotein synthesis was studied in an embryonic Drosophila cell line (Kc) that lacks the squalene-cholesterol branch of the polyisoprenoid biosynthetic pathway. Kc cells were labeled with [5-3H]mevalonic acid and the radioactive lipids formed were analyzed. Although the major labeled product was coenzyme Q, dolichol and a variety of dolichol derivatives could be readily detected. On the basis of their chromatographic and chemical properties, these derivatives were identified as dolichyl phosphate, glucosylphosphoryldolichol, mannosylphosphoryldolichol, and oligosaccharylpyrophosphoryldolichol. Both short term (4-h) and steady state (4-day) labeling experiments with mevalonate, rather than sugars as previously used, were performed to assess the level of these intermediates. The results of these studies, using a precursor common to all the intermediates, reveal that the early intermediates, N-acetylglucosaminylpyrophosphoryldolichol and N,N'-diacetylchitobiosylpyrophosphoryldolichol, are present at very low levels (less than 5%) relative to the other intermediates on the pathway to oligosaccharylpyrophosphoryldolichol. The total amount of dolichol intermediates remained essentially constant during the chase phase of pulse-chase experiments, indicating the absence of a major catabolic pathway for the polyisoprenoid backbone. As expected, however, the sugar moiety, studied with mannosylphosphoryldolichol, underwent rapid turnover. These results are discussed in the context of our current understanding of the pathway whereby dolichol derivatives participate in glycoprotein synthesis.

Highlights

  • Glycoprotein Synthesisin Drosophila Kc CellsBoth short term (4-h) and steady state (4-day) in Drosophila cells the difficulty of isolation and quantificalabelingexperimentswith mevalonate, ratherthan tion of the various glycosylated derivatives containing label sugars as previously used, were performed to assess in the dolichol chain would be obviated

  • From the Department of Biochemistryand Molecular Biology, The University of Texas, M.D

  • The major nonsaponifiable products synthesized from mevalonate in this cell line were shown to be coenzyme Q and dolichol; analysis for polar derivatives of dolichol was not carried out

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Summary

Glycoprotein Synthesisin Drosophila Kc Cells

Both short term (4-h) and steady state (4-day) in Drosophila cells the difficulty of isolation and quantificalabelingexperimentswith mevalonate, ratherthan tion of the various glycosylated derivatives containing label sugars as previously used, were performed to assess in the dolichol chain would be obviated. N linked polymannose glycoproteins have been shown to be synthesized in a mosquito cell line (l),and the detection of sugar-linked dolichol derivatives [2] indicates that the glycoprotein assembly process in insectsis analogous to that found in higher organisms. The pellets insoluble in CHC13:CH30H were dried solvent system A, petroleum ether:benzene:methanol (50:48:2); sol- with a stream of NPand washed with water at least five times until vent system B, ch1oroform:methanokconcentrated ammonia:water no radioactivity in the supernatantwas detected.

RESULTS
Ammonium Acetate
Radioactivity Mole ratio Radioactivity Mole ratio cprn X cprn X
Effect ofecdysone or tunicarnycin on synthesis of deMUO polyisoprenoids
Dolichol derivatives in derivatives in Total
Findings
DISCUSSION
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