Abstract

Dolichol is an isoprenoid lipid involved in the assembly of many membrane-bound and secreted glycoproteins. Dolichol biosynthesis can be considered as a branch of the cholesterol biosynthetic pathway subsequent to the reaction catalyzed by beta-hydroxy-beta-methylglutaryl coenzyme A reductase (hydroxymethylglutaryl-CoA reductase, EC 1.1.1.34), the major regulatory enzyme of cholesterol biosynthesis. Changes in reductase activity can also affect the rate of dolichol synthesis. Since the majority of plasma glycoproteins are synthesized by the liver, we have measured the rate of dolichol synthesis in mouse-liver slices after various treatments which alter hepatic beta-hydroxy-beta-methyl-glutaryl-CoA reductase activity in vivo. The rate of hepatic dolichol synthesis was decreased by dietary cholesterol and fasting, and increased by feeding cholestyramine. There is also a diurnal variation in the rate of dolichol synthesis. A plot of the rate of dolichol synthesis versus the rate of cholesterol synthesis suggests that, after the formation of isoprene units, the branch of dolichol biosynthesis is saturated at a lower concentration of isoprene intermediates than is required to saturate the branch of cholesterol biosynthesis. After 2 weeks of cholesterol feeding and the consequent depression of hepatic dolichol synthesis, the rate of [3H]mannose incorporation into liver and plasma glycoproteins was unchanged, indicating that the rate of dolichol biosynthesis was not rate-limiting for total glycoprotein synthesis under these conditions.

Highlights

  • Bly of many membrane-bound and secreted glycopro- our data further suggested that a rate-limiting enteins

  • CoA reductase activity and the rate of cholesterol synthesis may fluctuate with little change in the rate of dolichol synthesis when the pool sizes of the intermediates, possibly farnesyl pyrophosphate and/or isopentenyl pyrophosphate, are sufficient to saturate the dolichol branch of the pathway

  • Units, the branch of dolichol biosynthesis is saturated If regulation of dolichol synthesis in liver is similar to that at a lower concentration oisfopreneintermediates than observed in cultured cells, dietary cholesterol, which is required to saturate the branch of cholesterolbiosyn- decreases hepatic HMG-CoA reductase activity and cholesthesis

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Summary

Introduction

Bly of many membrane-bound and secreted glycopro- our data further suggested that a rate-limiting enteins. After hepatic dolichol that suppression of HMG-CoA reductase activity can inhibit synthesis had been partially suppressed for 2 weeks bycontinuous cholesterol feeding, the rate of mannose incorporation

Results
Conclusion
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