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  • 1
    Publication Date: 2019-01-19
    Description: Autophagy is a highly conserved intracellular degradative pathway that is crucial for cellular homeostasis. During autophagy, the core autophagy protein ATG12 plays, together with ATG5 and ATG16, an essential role in the expansion of the autophagosomal membrane. In this study we analyzed gene replacement mutants of atg12 in Dictyostelium discoideum AX2 wild-type and ATG16‾ cells. RNAseq analysis revealed a strong enrichment of, firstly, autophagy genes among the up-regulated genes and, secondly, genes implicated in cell motility and phagocytosis among the down-regulated genes in the generated ATG12‾, ATG16‾ and ATG12‾/16‾ cells. The mutant strains showed similar defects in fruiting body formation, autolysosome maturation, and cellular viability, implying that ATG12 and ATG16 act as a functional unit in canonical autophagy. In contrast, ablation of ATG16 or of ATG12 and ATG16 resulted in slightly more severe defects in axenic growth, macropinocytosis, and protein homeostasis than ablation of only ATG12, suggesting that ATG16 fulfils an additional function in these processes. Phagocytosis of yeast, spore viability, and maximal cell density were much more affected in ATG12‾/16‾ cells, indicating that both proteins also have cellular functions independent of each other. In summary, we show that ATG12 and ATG16 fulfil autophagy-independent functions in addition to their role in canonical autophagy.
    Electronic ISSN: 2073-4409
    Topics: Biology
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  • 2
    Publication Date: 2020-05-09
    Description: Macroautophagy, a highly conserved and complex intracellular degradative pathway, involves more than 20 core autophagy (ATG) proteins, among them the hexameric ATG12~5/16 complex, which is part of the essential ubiquitin-like conjugation systems in autophagy. Dictyostelium discoideum atg5 single, atg5/12 double, and atg5/12/16 triple gene knock-out mutant strains displayed similar defects in the conjugation of ATG8 to phosphatidylethanolamine, development, and cell viability upon nitrogen starvation. This implies that ATG5, 12 and 16 act as a functional unit in canonical autophagy. Macropinocytosis of TRITC dextran and phagocytosis of yeast were significantly decreased in ATG5¯ and ATG5¯/12¯ and even further in ATG5¯/12¯/16¯ cells. In contrast, plaque growth on Klebsiella aerogenes was about twice as fast for ATG5¯ and ATG5¯/12¯/16¯ cells in comparison to AX2, but strongly decreased for ATG5¯/12¯ cells. Along this line, phagocytic uptake of Escherichia coli was significantly reduced in ATG5¯/12¯ cells, while no difference in uptake, but a strong increase in membrane association of E. coli, was seen for ATG5¯ and ATG5¯/12¯/16¯ cells. Proteasomal activity was also disturbed in a complex fashion, consistent with an inhibitory activity of ATG16 in the absence of ATG5 and/or ATG12. Our results confirm the essential function of the ATG12~5/16 complex in canonical autophagy, and furthermore are consistent with autophagy-independent functions of the complex and its individual components. They also strongly support the placement of autophagy upstream of the ubiquitin-proteasome system (UPS), as a fully functional UPS depends on autophagy.
    Electronic ISSN: 2073-4409
    Topics: Biology
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  • 3
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    Nomos Verlagsgesellschaft mbH & Co. KG | Nomos Verlagsgesellschaft mbH & Co. KG
    Publication Date: 2024-04-14
    Description: Das Phänomen der künstlichen Intelligenz (KI) gewinnt im Vertrags- und Deliktsrecht zunehmend an Bedeutung. Für die Behandlung der Thematik sind Grundkenntnisse der KI notwendig. Die Autoren beschreiben im notwendigen Maße die technischen Aspekte der KI. Sie zeigen auf, dass implementierte KI nichts anderes ist als Computersoftware. KI kann sich zwar unterschiedlich verhalten, dies ist aber immer deterministisch begründet. Es bestehen Herausforderungen bei der Vorhersehbarkeit und Erklärbarkeit der Folgen von KI (xAI). Vor diesem Hintergrund werden die Auswirkungen auf das Vertrags- und Deliktsrecht untersucht. Eine (Teil-)Rechtsfähigkeit von KI bietet dabei keinen Mehrwert. Die wahren Herausforderungen der KI liegen anderswo.
    Keywords: Technology & Engineering ; Agriculture ; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TV Agriculture and farming
    Language: German
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