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Expanding the ubiquitin code through post-translational modification.
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Proc Natl Acad Sci U S A. 2015 May 26;112(21):6637-42. doi: 10.1073/pnas.1506593112. Epub 2015 May 12.
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The three 'P's of mitophagy: PARKIN, PINK1, and post-translational modifications.
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(Patho-)physiological relevance of PINK1-dependent ubiquitin phosphorylation.
EMBO Rep. 2015 Sep;16(9):1114-30. doi: 10.15252/embr.201540514. Epub 2015 Jul 10.
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Phosphorylation of OPTN by TBK1 enhances its binding to Ub chains and promotes selective autophagy of damaged mitochondria.
Proc Natl Acad Sci U S A. 2016 Apr 12;113(15):4039-44. doi: 10.1073/pnas.1523926113. Epub 2016 Mar 30.
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Ubiquitin phosphorylated at Ser57 hyper-activates parkin.
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Substitution of PINK1 Gly411 modulates substrate receptivity and turnover.
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Age- and disease-dependent increase of the mitophagy marker phospho-ubiquitin in normal aging and Lewy body disease.
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Development and characterization of phospho-ubiquitin antibodies to monitor PINK1-PRKN signaling in cells and tissue.
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Sensitive ELISA-based detection method for the mitophagy marker p-S65-Ub in human cells, autopsy brain, and blood samples.
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Post-Translational Modifications in Mammalian Folliculogenesis and Ovarian Pathologies.
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The Role of Protein Ubiquitination in the Onset and Progression of Sepsis.
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Regulation of disease signaling by YOD1: potential implications for therapeutic strategies.
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Studies on the functional role of UFMylation in cells (Review).
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Extract to lyse bacterial pathogens.
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TRIM25 facilitates ferroptosis in ovarian cancer through promoting PIEZO1 K63-linked ubiquitination and degradation.
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Endogenous interactomes of MFN1 and MFN2 provide novel insights into interorganelle communication and autophagy.
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Genetic Code Expansion Approaches to Decipher the Ubiquitin Code.
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本文引用的文献

1
The ubiquitin kinase PINK1 recruits autophagy receptors to induce mitophagy.
Nature. 2015 Aug 20;524(7565):309-314. doi: 10.1038/nature14893. Epub 2015 Aug 12.
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A Ubl/ubiquitin switch in the activation of Parkin.
EMBO J. 2015 Oct 14;34(20):2492-505. doi: 10.15252/embj.201592237. Epub 2015 Aug 7.
3
Disruption of the autoinhibited state primes the E3 ligase parkin for activation and catalysis.
EMBO J. 2015 Oct 14;34(20):2506-21. doi: 10.15252/embj.201592337. Epub 2015 Aug 7.
5
(Patho-)physiological relevance of PINK1-dependent ubiquitin phosphorylation.
EMBO Rep. 2015 Sep;16(9):1114-30. doi: 10.15252/embr.201540514. Epub 2015 Jul 10.
6
Mechanism of phospho-ubiquitin-induced PARKIN activation.
Nature. 2015 Aug 20;524(7565):370-4. doi: 10.1038/nature14879. Epub 2015 Jul 10.
7
Phosphorylation of ubiquitin at Ser65 affects its polymerization, targets, and proteome-wide turnover.
EMBO Rep. 2015 Sep;16(9):1131-44. doi: 10.15252/embr.201540298. Epub 2015 Jul 3.
8
Binding to serine 65-phosphorylated ubiquitin primes Parkin for optimal PINK1-dependent phosphorylation and activation.
EMBO Rep. 2015 Aug;16(8):939-54. doi: 10.15252/embr.201540352. Epub 2015 Jun 25.
9
Efficient genetic encoding of phosphoserine and its nonhydrolyzable analog.
Nat Chem Biol. 2015 Jul;11(7):496-503. doi: 10.1038/nchembio.1823. Epub 2015 Jun 1.

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