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1 degradation was conserved for human lipin 1 phosphatidate phosphatase.
3 Saccharomyces cerevisiae membrane-associated phosphatidate phosphatase (3-sn-phosphatidate phosphohyd
4 was performed to determine the mechanism of phosphatidate phosphatase activation by anionic phosphol
5 biosynthesis of triacylglycerol through its phosphatidate phosphatase activity and also acts as a tr
6 positively charged sphingoid base, inhibited phosphatidate phosphatase activity and antagonized the a
8 genase-like domains of Pah1 are required for phosphatidate phosphatase activity and the in vivo funct
9 ese results suggested that the activation of phosphatidate phosphatase activity by anionic phospholip
10 growth phase-mediated inductions of PAH1 and phosphatidate phosphatase activity do not correlate with
13 se A, which cause a significant reduction in phosphatidate phosphatase activity, the phosphorylation
19 mation of diacylglycerol by the PAH1-encoded phosphatidate phosphatase and by channeling diacylglycer
21 his enzyme, in conjunction with PAH1-encoded phosphatidate phosphatase, controls the levels of phosph
27 al loss-of-function mutation in the gene for phosphatidate phosphatase Lpin1 and a truncation mutatio
29 reviously that the activity of the conserved phosphatidate phosphatase Pah1p/Smp2p regulates nuclear
31 The Saccharomyces cerevisiae PAH1-encoded phosphatidate phosphatase (PAP) catalyzes the penultimat
34 The family of three lipin proteins act as phosphatidate phosphatase (PAP) enzymes required for gly
35 re evolutionarily conserved Mg(2+)-dependent phosphatidate phosphatase (PAP) enzymes with essential r
36 -1, lipin-2, and lipin-3) are Mg2+-dependent phosphatidate phosphatase (PAP) enzymes, which catalyze
42 myces cerevisiae PAH1-encoded Mg2+-dependent phosphatidate phosphatase (PAP1, 3-sn-phosphatidate phos
48 ingle lipin homolog in yeast, Smp2, exhibits phosphatidate phosphatase type-1 (PAP1) activity, which
49 e showed that the expression of PAH1-encoded phosphatidate phosphatase was induced by zinc deficiency
50 including phosphatidylinositol synthase and phosphatidate phosphatase, were not affected in the cki1
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