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1 PLD is a downstream target of the GTPase Rheb, which is
2 PLD patients scored higher on the PLD-Q total score than
3 PLD represents a potential target for the rational devel
4 PLD-MNA holds great promise as a novel, safe, effective,
5 PLD-MNA was packaged with a mixture of powdered peanut a
6 PLD-MNA was successfully laden with PNA/VD3/CpG powder a
7 PLD-MNA-mediated EPIT substantially reduced clinical all
8 PLD-Q is a valid, reproducible, and sensitive disease-sp
9 PLDs are also found in gut bacterial isolates that are u
10 PLDs are caused by mutations in genes involved in intrac
11 PLDs were found to be able to catalyze phospholipid head
14 ressed high interest in genetic testing as a PLD: age >=35 years (adjusted odds ratio [aOR], 1.75; 95
15 t of rapamycin (mTOR)/S6 kinase pathway in a PLD- and endocytosis-dependent manner, with both pharmac
19 ness of increased HCV screening to cover all PLD compared to the current approach, using a standard t
22 and the need to examine such opinions among PLDs and transplant patients to enhance patient educatio
23 tion, we sought to determine whether ALN and PLD played a similar role in the ability of A. haemolyti
25 D severity stages (Gigot classification) and PLD-Q total scores of PLD patients with general controls
28 We validated the assay under knockout and PLD-overexpression conditions and then applied it to cha
29 endosomes defined by the presence of PKC and PLD (the pericentrion), which results in significant dif
31 powder-laden, dissolvable microneedle array (PLD-MNA) for epidermal delivery of powdered allergens an
32 fic questionnaire that can be used to assess PLD-related symptoms in clinical care and future researc
37 These biological effects also required both PLD activity and mTOR function, with both the PLD inhibi
38 cogenic signaling pathway that requires both PLD and mTOR, and suggest that inhibitors of PLD or mTOR
40 stabilization also occurred, as indicated by PLD resistance to cycloheximide-induced EGFR protein deg
41 fatty acid chains, such as those produced by PLD, are capable of displacing DEPTOR and activating mTO
42 found that PA was generated sequentially by PLD and DGK in epidermal growth factor (EGF)-stimulated
43 c questionnaires lack sensitivity to capture PLD-related symptoms, a prerequisite to determine effect
44 type BBSomes were introduced into bbs cells, PLD was rapidly removed from the mutant cilia, indicatin
45 emoenzymatic method for visualizing cellular PLD activity, yielded a panel of optoPLDs whose range of
46 D is only distantly related to characterized PLDs from pathogenic bacteria, suggesting a distinct evo
49 d dynamics in human primary DCs by combining PLD pharmacological inhibition with a fluorescent PA sen
50 To test discriminative validity, we compared PLD-Q total scores of patients with different PLD severi
52 opment of a direct, specific, and continuous PLD assay that is based on the chelation-enhanced fluore
53 influenza virus stimulates phospholipase D (PLD) activity and that PLD co-localizes with influenza d
54 by the FcgammaR stimulates phospholipase D (PLD) activity and triggers the production of phosphatidi
55 FAM83B expression increases Phospholipase D (PLD) activity, and that suppression of PLD1 activity pre
58 of the PA-producing enzyme phospholipase D (PLD) and increased localization of PLD1 to ATG16L1-posit
60 uggested the involvement of phospholipase D (PLD) and its product phosphatidic acid (PA) in podosome
61 verexpression of the enzyme phospholipase D (PLD) and its reaction product, phosphatidic acid (PA).
63 ted as a helicase domain, a phospholipase D (PLD) domain, a DUF1998 domain and a gene of unknown func
64 ms can hydrolyse PC using a phospholipase D (PLD) enzyme and further convert the released choline to
71 of phosphatidic acid (PA), phospholipase D (PLD) is strongly involved in vesicular trafficking and c
76 lvins (RvD1- RvD5) activate phospholipase D (PLD), a ubiquitously expressed membrane lipase enzyme ac
77 tors, arcanolysin (ALN) and phospholipase D (PLD), affect the ability of the bacteria to adhere to an
78 mall molecule inhibitors of phospholipase D (PLD), an enzyme that produces phosphatidic acid in cells
79 on of the mTORC1 regulator, phospholipase D (PLD), and recapitulated with the addition of the PLD pro
80 bolic pathways generate PA: phospholipase D (PLD), diacylglycerol kinase (DGK), and lysophosphatidic
83 tween the signaling protein phospholipase D (PLD), phosphatidic acid (PA), and a specific set of micr
84 s a similar overall fold as phospholipase D (PLD), phosphatidylserine synthase (PSS) and tyrosyl-DNA
85 We exploited a microbial phospholipase D (PLD), which produces PA by phosphatidylcholine hydrolysi
86 e newly identified mediator phospholipase D (PLD), which promotes both mTORC1-dependent cell prolifer
88 amycin) signaling through a phospholipase D (PLD)-dependent increase in the concentration of phosphat
89 and PKCbetaII induces their phospholipase D (PLD)-dependent internalization and translocation to a su
90 wth factors also induce the phospholipase D (PLD)-phosphatidic acid (PA) pathway, required for mTORC1
95 armacological inhibition of phospholipase D (PLD)2, which generates the signaling lipid phosphatidic
97 -x thin films using pulsed laser deposition (PLD) enables improving their superconducting transition
98 lm was grown by the pulsed laser deposition (PLD) method and it exhibits a broad transparent window f
101 irus (HCV) among people living in detention (PLD) is typically high in many countries including Switz
103 lished online, the Paravalvular Leak Device (PLD; Occlutech) was incorrectly described as having a "p
104 it 1D channels with pore limiting diameters (PLDs) of 1.64, 2.90, 5.06, 5.28, 8.57, 8.83, 11.86, and
105 LD-Q total scores of patients with different PLD severity stages (Gigot classification) and PLD-Q tot
108 lantation (LT) for polycystic liver disease (PLD) is rare, extremely challenging and hemorrhagic, wit
109 nial aneurysms and polycystic liver disease (PLD), which can be severe and associated with significan
111 or fearful whole-body point-light displays (PLDs) as adapters and were then asked to perform an expl
112 ation and dynamics of the prion-like domain (PLD) of Orb2A using a nonconventional liquid-state NMR s
113 ng through its N-terminal prion-like domain (PLD) to the C-terminal domain of RNA polymerase II.
118 etics determined the delivery of DOX and DOX-PLD to the same tumor phenotype, collagen content determ
121 meability of that vessel permeability to DOX-PLD, indicating that collagen content may offer a biophy
124 al reductions in planktonic larval duration (PLD) associated with ocean warming, given current socioe
125 grees C) as well as pelagic larval duration (PLD) for juveniles from the beginning of the season and
126 ect determination of choline released during PLD-catalyzed phosphatidylcholine hydrolysis, making its
127 und an adaptation after-effect for emotional PLDs, indicating the existence of a neural representatio
128 orescence, confocal microscopy, endocytosis, PLD activity, and cell viability assays, we show that ex
129 CF-7 breast cancer cells have low endogenous PLD enzymatic activity and cell invasion, concomitant wi
130 nted the subcellular locations of endogenous PLD activity as elicited by physiological agonists of G
132 ethanol directly competes for the endogenous PLD product phosphatidic acid at lipid-binding sites wit
133 hotoreceptors, during illumination, enhanced PLD activity was sufficient to clear RLVs from the cell
135 for DISARM-mediated defence, with the fifth (PLD) being redundant for defence against some of the pha
143 l properties can be controlled by varying fs-PLD process parameters to prepare TiO(2) thin films, whi
148 ssect PA-dependent signaling pathways, image PLD activity in disease, and remodel intracellular membr
149 ssion of AMPK activity led to an increase in PLD activity, and conversely, activation of AMPK suppres
150 ggesting that, given potential reductions in PLD due to ocean warming, future marine reserve networks
152 he numbers (valence) of aromatic residues in PLDs determine the extent of temperature-dependent compa
156 cin (DOX), delivered by pegylated liposomes (PLD), to murine lung (3LL) and breast (4T1) tumors.
160 tudies using a combination of small molecule PLD inhibitors and siRNA knockdowns establish phosphatid
161 t mice and the development of small molecule PLD-specific inhibitors, in vivo roles for PLD1 in cance
163 osphatidylethanolamine phospholipase D (NAPE-PLD) (EC 3.1.4.4) catalyzes the final step in the biosyn
164 osphatidylethanolamine phospholipase D (NAPE-PLD) catalyzes the cleavage of membrane NAPEs into bioac
165 osphatidylethanolamine phospholipase D (NAPE-PLD) is regarded as the main enzyme responsible for the
166 hosphatidylethanolaminephospholipase D (NAPE-PLD), diacylglycerol lipase (DAGL), or phospholipase C (
167 d inflammation, but a lack of effective NAPE-PLD inhibitors has been a major obstacle to elucidating
168 t to a previously unrecognized role for NAPE-PLD in the regulation of dopamine neuron function, which
171 tituted dichlorophenes potently inhibit NAPE-PLD in cultured cells and have significant selectivity f
173 le acid lithocholic acid (LCA) inhibits NAPE-PLD activity (with an IC(50) of 68 mum), but LCA is also
175 ccumulation is enhanced in mice lacking NAPE-PLD, which display a substantial reduction in 6-OHDA-ind
176 jor obstacle to elucidating the role of NAPE-PLD and N-acyl-ethanolamide biosynthesis in these proces
177 utors to the neuroprotective effects of NAPE-PLD deletion, including suppression of Rac1 activity and
179 t selective small-molecule inhibitor of NAPE-PLD, ARN19874, has been reported (having an IC(50) of 34
180 To identify more potent inhibitors of NAPE-PLD, here we used a quenched fluorescent NAPE analog, PE
182 -401) as the first potent and selective NAPE-PLD inhibitor that decreased NAEs in the brains of freel
183 these results indicate that DGKzeta, but not PLD, plays an important role in mechanically induced inc
185 edly though, we found that the activation of PLD is not necessary for the mechanically induced increa
192 11 preclinical studies comparing efficacy of PLD and conventional doxorubicin in tumor-bearing mice.
195 on in later starvation induces expression of PLD-targeting microRNA 203 (miR-203), miR-887, miR-3619-
197 PLD and mTOR, and suggest that inhibitors of PLD or mTOR would be beneficial in cancers where PKC ove
198 chemical inhibition and RNA interference of PLD delayed viral entry and reduced viral titers in vitr
203 ly, powdered allergens delivered by means of PLD-MNA preferentially attracted immunoregulatory macrop
205 udies using inhibitors and overexpression of PLD proteins indicate that PLD1 and PLD2 play positive r
206 ce for the emerging tumorigenic potential of PLD, the role of the microenvironment, and putative conn
207 levels of phosphatidic acid, the product of PLD activity and were rescued by reconstitution with cat
208 l starvation, an elevated PA (the product of PLD enzymatic activity) activates mTOR and S6K, known to
212 soform-specific spatiotemporal regulation of PLD activity and further our understanding of the role o
213 e that Arf6 is involved in the regulation of PLD activity and PA synthesis required for efficient pha
215 hat DGKzeta is a novel negative regulator of PLD activity in this system that occurs through an inhib
217 However, little is known about the role of PLD in M(1) receptor signaling in native systems, and it
218 ot classification) and PLD-Q total scores of PLD patients with general controls and polycystic kidney
219 ening strategy involves routine screening of PLD who indicate they are from HCV high-risk populations
221 ed for studying the substrate specificity of PLD, together with its kinetic parameters, using natural
222 (PM) induced by phorbol ester stimulation of PLD were rapidly internalized via apparent nonvesicular
226 ull binodals that quantify concentrations of PLDs within coexisting dilute and dense phases as a func
231 the lipid-metabolizing enzyme phospholipaseD(PLD) is a novel regulator of Akt inGBM.Studies using a c
236 nced decreased connectivity but when reduced PLD was added as an effect, ~65% of connections were wea
237 nectin, which was blocked by down-regulating PLD or Rap1A or by treatment with a beta1 integrin neutr
249 melanogaster (fruit fly), demonstrating that PLD mediates behavioral responses to alcohol in vivo.
253 y following PA flux in the cell we show that PLD is involved in an initial increase in PA upon recept
255 bitors and PLD knockout mice, we showed that PLD was necessary for the induction of M(1)-dependent lo
258 al feedback mechanism involving AMPK and the PLD/mTOR signaling node in cancer cells with therapeutic
259 binant Vigna unguiculata PLD, as well as the PLD from Streptomyces chromofuscus, cabbage, or peanuts,
260 LD activity and mTOR function, with both the PLD inhibitor FIPI and rapamycin reducing cell growth by
261 lerosis complex subunit 2 (TSC2) exploit the PLD-PA pathway and thereby sustain mTORC1 activation at
262 can supplant water as the nucleophile in the PLD active site in a transphosphatidylation reaction of
264 Genetic and in vitro characterization of the PLD from Escherichia coli MS 200-1 showed this enzyme is
265 e small GTPase Arf6 in the activation of the PLD isoforms during FcgammaR-mediated phagocytosis.
267 ablish phosphatidic acid, the product of the PLD reaction, as an essential component for the membrane
270 pH 4, where His residues are protonated, the PLD is disordered and flexible, except for a partially p
271 r with IPOD sites or with PB/SG requires the PLD, whose activity is differentially regulated by the N
272 genously added phosphatidic acid rescued the PLD-inhibition phenotype, but only when PTPD2 was presen
273 brane phospholipid biosynthesis, whereas the PLD and DGK pathways are activated in response to growth
274 autophagy was restored by treatment with the PLD product, phosphatidic acid (PA) or adenoviral PLD1 e
278 ore, biased M(1) PAMs that did not couple to PLD not only failed to potentiate orthosteric agonist-in
279 atients with massive hepatomegaly related to PLD: the exposure left lateral sectionectomy (ELLS).
281 g the purified recombinant Vigna unguiculata PLD, as well as the PLD from Streptomyces chromofuscus,
283 ur FeSexTe1-x thin films were fabricated via PLD using a Fe0.94Se0.45Te0.55 target, the precisely mea
285 PA upon receptor stimulation; however, when PLD is blocked, the cell compensates by increasing PA pr
287 direct evidence for a feedback loop, whereby PLD induction upon starvation leads to PA, which induces
288 net monetary benefit of screening the whole PLD population was CHF 23 298 046 and CHF 4298 per perso
293 ot an F666D mutant that cannot interact with PLD, was sufficient to enhance cell growth and increase
295 We analyzed data from 107 patients with PLD from 3 randomized placebo-controlled trials (67 rece
296 collected data from individual patients with PLD to identify subgroups that benefit most from SA ther
297 alysis of data from individual patients with PLD, treatment with somatostatin analogues is equally ef
298 ntly increased survival in mice treated with PLD compared to conventional doxorubicin (HR 0.39; 95% C