Search alternatives:
teer decrease » greater decrease (Expand Search)
wt decrease » we decrease (Expand Search), _ decrease (Expand Search), nn decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
teer decrease » greater decrease (Expand Search)
wt decrease » we decrease (Expand Search), _ decrease (Expand Search), nn decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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67501
p62 levels in Atg mutants, p62 RNAi and p62 overexpression cells.
Published 2012“…Scalebar in panel B equals 30 µm for panels B–E. <i>Genotypes are: (A) lane 1: w [1118], lane 2: Atg7[d77]/Atg7[d14], lane 3: Atg8a[d4], lane 4: UbiGal4/+; p62[HMS00551]/+, lane 5: UbiGal4/+; p62[HMS00938]/+, lane 6: w [1118], lane 7: Atg8a[d4], lane 8: cgGal4/UAS-p62-GFP; (B) hs-Flp; UAS-LampGFP/p62[KK108193]; Act>CD2>Gal4, UAS-Dcr2/+; (C) hs-Flp; UAS-LampGFP/+; Act>CD2>Gal4, UAS-Dcr2/p62[HMS00551]; (D) hs-Flp; UAS-LampGFP/+; Act>CD2>Gal4, UAS-Dcr2/p62[HMS00938]; (E) hsFlp; UAS-p62-GFP/+; Act>CD2>Gal4,UAS-Dcr2/+.…”
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67502
GSK3beta-Mediated Drp1 Phosphorylation Induced Elongated Mitochondrial Morphology against Oxidative Stress
Published 2012“…In this report, we pinpointed 11 Serine/Threonine sites spanning from residue 634∼736 of the GED domain and robustly confirmed Drp1 Ser693 as a novel GSK3beta phosphorylation site. Our results suggest that GSK3beta-mediated phosphorylation at Ser693 does cause a dramatic decrease of GTPase activity; in contrast, GSK3beta-mediated phosphorylation at Ser693 appears not to affect Drp1 inter-/intra-molecular interactions. …”
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67503
Results from test runs in four different conditions.
Published 2021“…<p>All five barcode factors (A), two factors (GCC and HD; B), one factor (GCC; C) and another single factor (HD; D) were considered in the conditions for selecting an optimal barcode set in each condition. …”
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67504
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67505
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67506
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67507
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67508
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67509
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67510
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67511
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67512
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67513
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67514
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67515
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67516
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67517
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67518
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67519
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67520