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1 cascade that regulates the function of Pah1 phosphatidate phosphatase.
2 degradation was conserved for human lipin 1 phosphatidate phosphatase.
4 Saccharomyces cerevisiae membrane-associated phosphatidate phosphatase (3-sn-phosphatidate phosphohyd
5 was performed to determine the mechanism of phosphatidate phosphatase activation by anionic phosphol
6 biosynthesis of triacylglycerol through its phosphatidate phosphatase activity and also acts as a tr
7 positively charged sphingoid base, inhibited phosphatidate phosphatase activity and antagonized the a
9 phosphorylation of Pah1 stimulated both its phosphatidate phosphatase activity and its subsequent ph
10 genase-like domains of Pah1 are required for phosphatidate phosphatase activity and the in vivo funct
11 ese results suggested that the activation of phosphatidate phosphatase activity by anionic phospholip
12 growth phase-mediated inductions of PAH1 and phosphatidate phosphatase activity do not correlate with
15 se A, which cause a significant reduction in phosphatidate phosphatase activity, the phosphorylation
21 mation of diacylglycerol by the PAH1-encoded phosphatidate phosphatase and by channeling diacylglycer
22 is a protein phosphatase that activates Pah1 phosphatidate phosphatase at the nuclear-endoplasmic ret
25 his enzyme, in conjunction with PAH1-encoded phosphatidate phosphatase, controls the levels of phosph
33 al loss-of-function mutation in the gene for phosphatidate phosphatase Lpin1 and a truncation mutatio
35 reviously that the activity of the conserved phosphatidate phosphatase Pah1p/Smp2p regulates nuclear
37 The Saccharomyces cerevisiae PAH1-encoded phosphatidate phosphatase (PAP) catalyzes the penultimat
40 The family of three lipin proteins act as phosphatidate phosphatase (PAP) enzymes required for gly
41 re evolutionarily conserved Mg(2+)-dependent phosphatidate phosphatase (PAP) enzymes with essential r
42 -1, lipin-2, and lipin-3) are Mg2+-dependent phosphatidate phosphatase (PAP) enzymes, which catalyze
48 h a modulator of transcription factors and a phosphatidate phosphatase (PAP1), is known to play impor
49 myces cerevisiae PAH1-encoded Mg2+-dependent phosphatidate phosphatase (PAP1, 3-sn-phosphatidate phos
52 anding of how phosphorylation of lipin 1beta phosphatidate phosphatase regulates its interaction with
53 hat catalyzes the dephosphory-lation of Pah1 phosphatidate phosphatase, required for its translocatio
55 c reticulum membrane localization of Pah1, a phosphatidate phosphatase that produces diacylglycerol f
58 ingle lipin homolog in yeast, Smp2, exhibits phosphatidate phosphatase type-1 (PAP1) activity, which
59 e showed that the expression of PAH1-encoded phosphatidate phosphatase was induced by zinc deficiency
60 including phosphatidylinositol synthase and phosphatidate phosphatase, were not affected in the cki1
65 in lipid metabolism as an activator of Pah1 phosphatidate phosphatase, which produces diacylglycerol