NIPSNAP1 and NIPSNAP2 Act as "Eat Me" Signals for Mitophagy
DEVELOPMENTAL CELL
Authors: Abudu, Yakubu Princely; Pankiv, Serhiy; Mathai, Benan John; Lystad, Aif Hakon; Bindesboll, Christian; Brenne, Hanne Britt; Ng, Matthew Yoke Wui; Thiede, Bernd; Yamamoto, Ai; Nthiga, Thaddaeus Mutugi; Lamark, Trond; Esguerra, Camila, V; Johansen, Terje; Simonsen, Anne
Abstract
The clearance of damaged or dysfunctional mitochondria by selective autophagy (mitophagy) is important for cellular homeostasis and prevention of disease. Our understanding of the mitochondria! signals that trigger their recognition and targeting by mitophagy is limited. Here, we show that the mitochondrial matrix proteins 4-Nitrophenyl phosphatase domain and non-neuronal SNAP25-like protein homolog 1 (NIPSNAP1) and NIPSNAP2 accumulate on the mitochondria surface upon mitochondrial depolarization. There, they recruit proteins involved in selective autophagy, including autophagy receptors and ATG8 proteins, thereby functioning as an "eat me" signal for mitophagy. NIPSNAP1 and NIPSNAP2 have a redundant function in mitophagy and are predominantly expressed in different tissues. Zebrafish lacking a functional Nipsnapl display reduced mitophagy in the brain and parkinsonian phenotypes, including loss of tyrosine hydroxylase (Th1)-positive dopaminergic (DA) neurons, reduced motor activity, and increased oxidative stress.
An optical biosensor assay for rapid dual detection of Botulinum neurotoxins A and E
SCIENTIFIC REPORTS
Authors: Leveque, Christian; Ferracci, Geraldine; Maulet, Yves; Mazuet, Christelle; Popoff, Michel R.; Blanchard, Marie-Pierre; Seagar, Michael; El Far, Oussama
Abstract
The enzymatic activity of the pathogenic botulinum neurotoxins type A and E (BoNT/A and E) leads to potentially lethal paralytic symptoms in humans and their prompt detection is of crucial importance. A chip assay based on Surface Plasmon Resonance monitoring of the cleavage products is a simple method that we have previously established to detect BoNT/A activity. We have now developed a similar format assay to measure BoNT/E activity. A monoclonal antibody specifically recognizing SNAP25 cleaved by BoNT/E was generated and used to measure the appearance of the neo-epitope following injection of BoNT/E over SNAP-25 immobilized on a chip. This assay detects BoNT/E activity at 1 LD50/ml within minutes and linear dose-responses curves were obtained using a multiplexed biosensor. A threshold of 0.01 LD50/ml was achieved after 5 h of cleavage. This assay is 10-fold more sensitive than the in vivo assay for direct detection of BoNT/E in serum samples. The SNAP25 chip assay is able to discriminate in an automated manner the presence of BoNT/E, BoNT/A or a combination of both toxins.