TY - JOUR A1 - Grubbs, Kirk J. A1 - Surup, Frank A1 - Biedermann, Peter H. W. A1 - McDonald, Bradon R. A1 - Klassen, Jonathan L. A1 - Carlson, Caitlin M. A1 - Clardy, Jon A1 - Currie, Cameron R. T1 - Cycloheximide-Producing Streptomyces Associated With Xyleborinus saxesenii and Xyleborus affinis Fungus-Farming Ambrosia Beetles JF - Frontiers in Microbiology N2 - Symbiotic microbes help a myriad of insects acquire nutrients. Recent work suggests that insects also frequently associate with actinobacterial symbionts that produce molecules to help defend against parasites and predators. Here we explore a potential association between Actinobacteria and two species of fungus-farming ambrosia beetles, Xyleborinus saxesenii and Xyleborus affinis. We isolated and identified actinobacterial and fungal symbionts from laboratory reared nests, and characterized small molecules produced by the putative actinobacterial symbionts. One 16S rRNA phylotype of Streptomyces (XylebKG-1) was abundantly and consistently isolated from the galleries and adults of X. saxesenii and X. affinis nests. In addition to Raffaelea sulphurea, the symbiont that X. saxesenii cultivates, we also repeatedly isolated a strain of Nectria sp. that is an antagonist of this mutualism. Inhibition bioassays between Streptomyces griseus XylebKG-1 and the fungal symbionts from X. saxesenii revealed strong inhibitory activity of the actinobacterium toward the fungal antagonist Nectria sp. but not the fungal mutualist R. sulphurea. Bioassay guided HPLC fractionation of S. griseus XylebKG-1 culture extracts, followed by NMR and mass spectrometry, identified cycloheximide as the compound responsible for the observed growth inhibition. A biosynthetic gene cluster putatively encoding cycloheximide was also identified in S. griseus XylebKG-1. The consistent isolation of a single 16S phylotype of Streptomyces from two species of ambrosia beetles, and our finding that a representative isolate of this phylotype produces cycloheximide, which inhibits a parasite of the system but not the cultivated fungus, suggests that these actinobacteria may play defensive roles within these systems. KW - symbiosis KW - mutualism KW - insect fungal interactions KW - antimicrobial KW - Insect symbiois Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212449 VL - 11 ER - TY - JOUR A1 - Wolf-Brandstetter, C A1 - Beutner, R A1 - Hess, R A1 - Bierbaum, S A1 - Wagner, K A1 - Scharnweber, D A1 - Gbureck, U A1 - Moseke, C T1 - Multifunctional calcium phosphate based coatings on titanium implants with integrated trace elements JF - Biomedical Materials N2 - For decades, the main focus of titanium implants developed to restore bone functionality was on improved osseointegration. Additional antimicrobial properties have now become desirable, due to the risk that rising antibiotic resistance poses for implant-associated infections. To this end, the trace elements of copper and zinc were integrated into calcium phosphate based coatings by electrochemically assisted deposition. In addition to their antimicrobial activity, zinc is reported to attract bone progenitor cells through chemotaxis and thus increase osteogenic differentiation, and copper to stimulate angiogenesis. Quantities of up to 68.9 ± 0.1 μg cm\(^{-2}\) of copper and 56.6 ± 0.4 μg cm\(^{-2}\) of zinc were deposited; co-deposition of both ions did not influence the amount of zinc but slightly increased the amount of copper in the coatings. The release of deposited copper and zinc species was negligible in serum-free simulated body fluid. In protein-containing solutions, a burst release of up to 10 μg ml\(^{-1}\) was observed for copper, while zinc was released continuously for up to 14 days. The presence of zinc was beneficial for adhesion and growth of human mesenchymal stromal cells in a concentration-dependent manner, but cytotoxic effects were already visible for coatings with an intermediate copper content. However, co-deposited zinc could somewhat alleviate the adverse effects of copper. Antimicrobial tests with E. coli revealed a decrease in adherent bacteria on brushite without copper or zinc of 60%, but if the coating contained both ions there was almost no bacterial adhesion after 12 h. Coatings with high zinc content and intermediate copper content had the overall best multifunctional properties. KW - coating KW - titanium KW - implant KW - pro-angiogenic KW - osteogenic KW - antimicrobial Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-254085 VL - 15 IS - 2 ER - TY - THES A1 - Peters, Simon T1 - The impact of sphingolipids on \(Neisseria\) \(meningitidis\) and their role in meningococcal pathogenicity T1 - Einfluss von Sphingolipiden auf \(Neisseria\) \(meningitidis\) und deren Bedeutung für die Pathogenität N2 - The obligate human pathogen Neisseria meningitidis is a major cause of sepsis and meningitis worldwide. It affects mainly toddlers and infants and is responsible for thousands of deaths each year. In this study, different aspects of the importance of sphingolipids in meningococcal pathogenicity were investigated. In a first step, the acid sphingomyelinase (ASM), which degrades membrane sphingomyelin to ceramide, was studied in the context of meningococcal infection. A requirement for ASM surface activity is its translocation from the lysosomal compartment to the cell surface, a process that is currently poorly understood. This study used various approaches, including classical invasion and adherence assays, flow cytometry, and classical and super resolution immunofluorescence microscopy (dSTORM). The results showed that the live, highly piliated N. meningitidis strain 8013/12 induced calcium-dependent ASM translocation in human brain microvascular endothelial cells (HBMEC). Furthermore, it promoted the formation of ceramide-rich platforms (CRPs). In addition, ASM translocation and CRP formation were observed after treating the cells with pili-enriched fractions derived from the same strain. The importance for N. meningitidis to utilize this pathway was shown by the inhibition of the calcium-dependent ASM translocation, which greatly decreased the number of invasive bacteria. I also investigated the importance of the glycosphingolipids GM1 and Gb3. The results showed that GM1, but not Gb3, plays an important role in the ability of N. meningitidis to invade HBMEC. By combining dSTORM imaging and microbiological approaches, we demonstrated that GM1 accumulated prolifically around bacteria during the infection, and that this interaction seemed essential for meningococcal invasion. Sphingolipids are not only known for their beneficial effect on pathogens. Sphingoid bases, including sphingosine, are known for their antimicrobial activity. In the last part of this study, a novel correlative light and electron microscopy approach was established in the combination with click chemistry to precisely localize azido-functionalized sphingolipids in N. meningitidis. The result showed a distinct concentration-dependent localization in either the outer membrane (low concentration) or accumulated in the cytosol (high concentration). This pattern was confirmed by mass spectrometry on separated membrane fractions. Our data provide a first insight into the underlying mechanism of antimicrobial sphingolipids. N2 - Der obligate Humanpathogen Neisseria meningitidis ist weltweit einer der Hauptursachen für Sepsis und Meningitis. Er befällt vor allem Kleinkinder und Säuglinge und ist jedes Jahr für Tausende von Todesfällen verantwortlich. In dieser Studie wurden verschiedene Aspekte der Bedeutung von Sphingolipiden bei der Pathogenität von Meningokokken untersucht. In einem ersten Schritt wurde die saure Sphingomyelinase (ASM), die Membran-Sphingomyelin zu Ceramid abbaut, im Zusammenhang mit einer Meningokokken-Infektion untersucht. Eine Voraussetzung für die Oberflächenaktivität der ASM ist ihre Translokation vom lysosomalen Kompartiment auf die Zelloberfläche, ein Prozess, der derzeit noch wenig verstanden wird. In dieser Studie wurden verschiedene Ansätze verwendet, darunter klassische Invasions- und Adhärenztests, Durchflusszytometrie sowie klassische und superauflösende Immunfluoreszenzmikroskopie (dSTORM). Die Ergebnisse zeigten, dass der lebende, hochpiliatisierte N. meningitidis Stamm 8013/12 eine kalziumabhängige ASM-Translokation in mikrovaskulären Endothelzellen des menschlichen Gehirns (HBMEC) induzierte. Des Weiteren förderte er die Bildung Ceramid-reicher Plattformen (CRPs). Zusätzlich wurden ASM-Translokation und CRP-Bildung beobachtet, nachdem die Zellen mit pili-angereicherten Fraktionen desselben Stammes behandelt worden waren. Die Bedeutung für N. meningitidis in der Pathogenese zeigte sich durch die Hemmung der Calcium-abhängigen ASM-Translokation, wodurch die Zahl der invasiven Bakterien stark reduziert wurde. Ich untersuchte auch die Bedeutung der Glykosphingolipide GM1 und Gb3. Die Ergebnisse zeigten, dass GM1, aber nicht Gb3, eine wichtige Rolle bei der Fähigkeit von N. meningitidis spielt, in Gehirnendothelzellen einzudringen. Durch die Kombination von dSTORM-Bildgebung und mikrobiologischen Ansätzen konnten wir zeigen, dass sich GM1 während der Infektion vermehrt um die Bakterien herum anreicherte und dass diese Interaktion für die Invasion von Meningokokken essenziell ist. Sphingolipide sind nicht nur für ihre positive Wirkung auf Krankheitserreger bekannt. Sphingoidbasen, einschließlich Sphingosin, sind zusätzlich für ihre antimikrobielle Aktivität bekannt. Im letzten Teil dieser Studie wurde ein neuartiger korrelativer licht- und elektronenmikroskopischer Ansatz in der Kombination mit Click-Chemie etabliert, um azidofunktionalisierte Sphingolipide in N. meningitidis genau zu lokalisieren. Das Ergebnis zeigte eine deutliche konzentrationsabhängige Lokalisation entweder in der äußeren Membran (niedrige Konzentration) oder akkumuliert im Zytosol (hohe Konzentration). Dieses Muster konnte durch einen Massenspektrometrischen Ansatz bestätigt werden. Hierfür wurde eine Separation der inneren und äußeren Membran, nach Behandlung mit der niedrigen Konzentration, etabliert. Die verschiedenen Membranfraktionen wurden anschließend auf ihren Gehalt an funktionalisierten Sphingolipiden hin untersucht und bestätigten die lokalisierung in der äußeren Membran. Unsere Daten geben einen ersten Einblick in den zugrundeliegenden Mechanismus der antimikrobiellen Sphingolipide. KW - Neisseria meningitidis KW - Sphingolipide KW - Infektion KW - Pathogenität KW - host-pathogen interaction KW - antimicrobial Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226233 ER - TY - JOUR A1 - Azzami, Klara A1 - Ritter, Wolfgang A1 - Tautz, Jürgen A1 - Beier, Hildburg T1 - Infection of honey bees with acute bee paralysis virus does not trigger humoral or cellular immune responses JF - Archives of Virology N2 - We have studied the responses of honey bees at different life stages (Apis mellifera) to controlled infection with acute bee paralysis virus and have identified the haemolymph of infected larvae and adult worker bees as the compartment where massive propagation of ABPV occurs. Insects respond with a broad spectrum of induced innate immune reactions to bacterial infections, whereas defence mechanisms based on RNA interference play a major role in antiviral immunity. In this study, we have determined that honey bee larvae and adult workers do not produce a humoral immune reaction upon artificial infection with ABPV, in contrast to control individuals challenged with Escherichia coli. ABPV-infected bees produced neither elevated levels of specific antimicrobial peptides (AMPs), such as hymenoptaecin and defensin, nor any general antimicrobial activity, as revealed by inhibition-zone assays. Additionally, adult bees did not generate melanised nodules upon ABPV infection, an important cellular immune function activated by bacteria and viruses in some insects. Challenge of bees with both ABPV and E. coli showed that innate humoral and cellular immune reactions are induced in mixed infections, albeit at a reduced level. KW - chemosensory protein KW - bee larva KW - adult bee KW - honey bee KW - larva KW - work bee KW - infected bee KW - immune response KW - young work bee KW - capsid protein KW - abdominal KW - tergite KW - haemolymph KW - sample KW - Imd pathway KW - worker bee larva KW - antimicrobial KW - peptide Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126863 VL - 157 IS - 4 ER -