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1.
J Cell Sci ; 126(Pt 4): 939-52, 2013 Feb 15.
Article in English | MEDLINE | ID: mdl-23239026

ABSTRACT

Selective macro-autophagy is an intracellular process by which large cytoplasmic materials are selectively sequestered and degraded in the lysosomes. Substrate selection is mediated by ubiquitylation and recruitment of ubiquitin-binding autophagic receptors such as p62, NBR1, NDP52 and Optineurin. Although it has been shown that these receptors act cooperatively to target some types of substrates to nascent autophagosomes, their precise roles are not well understood. We examined selective autophagic degradation of peroxisomes (pexophagy), and found that NBR1 is necessary and sufficient for pexophagy. Mutagenesis studies of NBR1 showed that the amphipathic α-helical J domain, the ubiquitin-associated (UBA) domain, the LC3-interacting region and the coiled-coil domain are necessary to mediate pexophagy. Strikingly, substrate selectivity is partly achieved by NBR1 itself by coincident binding of the J and UBA domains to peroxisomes. Although p62 is not required when NBR1 is in excess, its binding to NBR1 increases the efficiency of NBR1-mediated pexophagy. Together, these results suggest that NBR1 is the specific autophagy receptor for pexophagy.


Subject(s)
Autophagy/physiology , Peroxisomes/metabolism , Proteins/metabolism , Blotting, Western , Cell Line , HeLa Cells , Humans , Intracellular Signaling Peptides and Proteins , Microscopy, Confocal , Microscopy, Electron , Peroxisomes/ultrastructure
2.
Cell Mol Life Sci ; 68(11): 1953-68, 2011 Jun.
Article in English | MEDLINE | ID: mdl-20953893

ABSTRACT

The protein kinase C (PKC) family of serine/threonine kinases consists of ten different isoforms grouped into three subfamilies, denoted classical, novel and atypical PKCs (aPKCs). The aPKCs, PKCι/λ and PKCζ serve important roles during development and in processes subverted in cancer such as cell and tissue polarity, cell proliferation, differentiation and apoptosis. In an effort to identify novel interaction partners for aPKCs, we performed a yeast two-hybrid screen with the regulatory domain of PKCι/λ as bait and identified the Krüppel-like factors family protein TIEG1 as a putative interaction partner for PKCι/λ. We confirmed the interaction of both aPKCs with TIEG1 in vitro and in cells, and found that both aPKCs phosphorylate the DNA-binding domain of TIEG1 on two critical residues. Interestingly, the aPKC-mediated phosphorylation of TIEG1 affected its DNA-binding activity, subnuclear localization and transactivation potential.


Subject(s)
Early Growth Response Transcription Factors/metabolism , Kruppel-Like Transcription Factors/metabolism , Protein Kinase C/metabolism , Amino Acid Sequence , HeLa Cells , Humans , Immunoblotting , Models, Molecular , Molecular Sequence Data , Phosphorylation , Protein Binding , Sequence Alignment , Two-Hybrid System Techniques
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