TY - THES A1 - Pawlik, Marie-Christin T1 - Gene expression in the human pathogen Neisseria meningitidis: Adaptation to serum exposure and zinc limitation T1 - Genexpression im humanen Pathogen Neisseria meningitidis: Adaptation an Serumexposition und Zinkmangel N2 - Neisseria meningitidis is a facultative human pathogen that occasionally shows strong resistance against serum complement exposure. Previously described factors that mediate meningococcal serum resistance are for example the capsule, LPS sialylation, and expression of the factor H binding protein. I aimed for identification of novel serum resistance factors, thereby following two approaches, i) the analysis of the impact of global regulators of gene expression on serum resistance; and ii) a comparative analysis of closely related strains differing in serum resistance. (i) Of six meningococcal global regulators of gene expression studied, only mutation of the zinc uptake regulator Zur reduced complement deposition on meningococci. Little was known about meningococcal Zur and regulatory processes in response to zinc. I therefore elucidated the yet unidentified meningococcal Zur regulon comparing the transcriptional response of the N. meningitidis strain MC58 under zinc-rich and zinc-deficient conditions using a common reference design of microarray analysis. The meningococcal Zur regulon comprises 17 genes, of which 15 genes were repressed and two genes were activated at high zinc condition. Amongst the Zur-repressed genes were genes involved in zinc uptake, tRNA modification, and ribosomal assembly. A 23 bp meningococcal consensus Zur binding motif (Zur box) with a conserved central palindrome was established (TGTTATDNHATAACA) and detected in the promoter region of all regulated transcriptional units (genes/operons). In vitro binding of meningococcal Zur to the Zur box of three selected genes was shown for the first time using EMSAs. Binding of meningococcal Zur to DNA depended specifically on zinc, and mutations in the palindromic sequence constrained Zur binding to the DNA motif. ii) Three closely related strains of ST-41/44 cc from invasive disease and carriage which differed in their resistance to serum complement exposure were analysed to identify novel mediators of serum resistance. I compared the strains’ gene content by microarray analysis which revealed six genes being present in both carrier isolates, but absent in the invasive isolate. Four of them are part of two Islands of horizontally transferred DNA, i.e. IHT-B and –C. The working group furthermore applied a comprehensive screening assay, a transcriptome and a proteome analysis leading to identification of three target proteins. I contributed to establish the role of these three proteins in serum resistance: The adhesin Opc mediates serum resistance by binding of vitronectin, a negative regulator of the complement system; the hypothetical protein NMB0865 slightly contributes to serum resistance by a yet unknown mechanism; and NspA, recently identified to bind the negative complement regulator factor H, led to considerable reduced complement-mediated killing. N2 - Neisseria meningitidis ist ein fakultatives Humanpathogen, welches mitunter sehr resistant gegenüber Serumkomplement-Exposition ist. Bereits beschriebene Faktoren, welche die Serumresistenz von Meningokokken fördern, sind beispielsweise die Kapsel, LPS-Sialylierung und Expression des fH-bindenden Proteins. Das Ziel dieser Arbeit war die Identifikation neuartiger Serumresistenzfaktoren, wobei ich zwei Ansätzen verfolgte: i) Die Analyse des Einflusses von globalen Regulatoren der Genexpression auf die Serumresistenz; und ii) eine vergleichenden Analyse von eng verwandten Stämmen, die sich hinsichtlich ihrer Serumresistanz unterschieden. i) Von sechs untersuchten globalen Regulatoren der Genexpression, war die Komplementdeposition auf Meningokokken nur nach Mutation des Regulators der Zinkaufnahme, Zur, reduziert. Über Zur selbst und die regulatorischen Prozesse in Reaktion auf Zink war in Meningokokken wenig bekannt. Ich habe daher das bisher nicht bestimmte Zur-Regulon von Meningokokken aufgeklärt, wofür ich mittels Mikroarrays die transkriptionelle Antwort des N. meningitidis-Stammes MC58 unter Zink-Überfluss und Zink-Mangel zu vergleichen. Das Zur-Regulon von Meningokokken umfasst 17 Gene, von denen unter Zinküberfluss 15 reprimiert und zwei aktiviert wurden. Unter den Zur-reprimierten Genen fanden sich Gene, die in die Aufnahme von Zink, die Modikation von tRNAs und den Zusammenbau des Ribosoms involviert sind. Ein 23 bp langes Binde-Konsensusmotiv für Meningokokken-Zur (Zur-Box) mit einem konservierten zentralen Palindrom wurde ermittelt (TGTTATDNHATAACA) und in der Promotorregion aller regulierten Transkriptionseinheiten (Gene/Operons) detektiert. In vitro-Bindung des N. meningitidis Zur an die Zur-Box dreier ausgewählter Genen konnte mittels EMSAs erstmals gezeigt werden. Die Bindung von Zur an DNA war spezifisch abhängig von Zink, und Mutationen in der palindromischen Sequenz hemmten die Zur-Bindung an das DNA-Motiv. ii) Drei eng verwandte Stämme des ST-41/44-Komplexes aus invasiver Erkrankung und Trägertum, die sich in ihrer Resistenz gegenüber Serumkomplement-Exposition unterschieden, wurden analysiert um neuartige Mediatoren der Serumresistenz zu identifizieren. Der Gengehalt der Stämme wurde mittels Mikroarray-Analyse verglichen. Dies offenbarte sechs Gene, die in den beiden Trägerstämmen vorhanden, aber in dem invasiven Isolat abwesend waren. Vier dieser Gene liegen innerhalb zweier Inseln horizontal transferierter DNA, d.h. IHT-B und –C. Weiterhin führte die Arbeitsgruppe eine Transkriptom- und Proteom-Analyse der drei Stämme sowie einen umfangsreichen Screening-Assay durch. Diese Ansätze führten zur Identifikation dreier Kandidaten-Proteine für die weitere Analyse. Ich wirkte daran mit, die Rolle dieser Proteine für die Serumresistenz von Meningokokken zu ermitteln: Das Adhäsin Opc vermittelt Serumresistenz durch Bindung von Vitronektin, einem negativen Regulator des Komplementsystems; das hypothetische Protein NMB0865 trägt über einen bisher unbekannten Mechanismus geringfügig zur Serumresistanz bei; und NspA, für welches vor Kurzem erkannt wurde, dass es den negativen Komplementregulator Faktor H bindet, führte zu beträchtlich reduzierter Abtötung durch Komplement. KW - Komplement KW - Neisseria meningitidis KW - Genregulation KW - Zinkmangel KW - Serumresistenz KW - Meningokokken KW - globale Regulatoren KW - Serum KW - Bakterien KW - Zink KW - serum resistance KW - meningococci KW - global regulators KW - zinc limitation Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-78758 ER - TY - JOUR A1 - Hubert, Kerstin A1 - Pawlik, Marie-Christin A1 - Claus, Heike A1 - Jarva, Hanna A1 - Meri, Seppo A1 - Vogel, Ulrich T1 - Opc Expression, LPS Immunotype Switch and Pilin Conversion Contribute to Serum Resistance of Unencapsulated Meningococci JF - PLoS One N2 - Neisseria meningitidis employs polysaccharides and outer membrane proteins to cope with human serum complement attack. To screen for factors influencing serum resistance, an assay was developed based on a colorimetric serum bactericidal assay. The screening used a genetically modified sequence type (ST)-41/44 clonal complex (cc) strain lacking LPS sialylation, polysaccharide capsule, the factor H binding protein (fHbp) and MutS, a protein of the DNA repair mechanism. After killing of >99.9% of the bacterial cells by serum treatment, the colorimetric assay was used to screen 1000 colonies, of which 35 showed enhanced serum resistance. Three mutant classes were identified. In the first class of mutants, enhanced expression of Opc was identified. Opc expression was associated with vitronectin binding and reduced membrane attack complex deposition confirming recent observations. Lipopolysaccharide (LPS) immunotype switch from immunotype L3 to L8/L1 by lgtA and lgtC phase variation represented the second class. Isogenic mutant analysis demonstrated that in ST-41/44 cc strains the L8/L1 immunotype was more serum resistant than the L3 immunotype. Consecutive analysis revealed that the immunotypes L8 and L1 were frequently observed in ST-41/44 cc isolates from both carriage and disease. Immunotype switch to L8/L1 is therefore suggested to contribute to the adaptive capacity of this meningococcal lineage. The third mutant class displayed a pilE allelic exchange associated with enhanced autoaggregation. The mutation of the C terminal hypervariable region D of PilE included a residue previously associated with increased pilus bundle formation. We suggest that autoaggregation reduced the surface area accessible to serum complement and protected from killing. The study highlights the ability of meningococci to adapt to environmental stress by phase variation and intrachromosomal recombination affecting subcapsular antigens. KW - factor H KW - C-reactive protein KW - B neisseria meningitidis KW - outer membrane protein KW - phase variation KW - serogroup B KW - bactericidal activity KW - epithelial cells KW - gene conversion KW - strain MC58 Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-135421 VL - 7 IS - 9 ER - TY - JOUR A1 - Claus, Heike A1 - Hubert, Kerstin A1 - Becher, Dörte A1 - Otto, Andreas A1 - Pawlik, Marie-Christin A1 - Lappann, Ines A1 - Strobel, Lea A1 - Vogel, Ulrich A1 - Johswich, Kay T1 - A homopolymeric adenosine tract in the promoter region of nspA influences factor H-mediated serum resistance in Neisseria meningitidis JF - Scientific Reports N2 - Although usually asymptomatically colonizing the human nasopharynx, the Gram-negative bacterium Neisseria meningitidis (meningococcus) can spread to the blood stream and cause invasive disease. For survival in blood, N. meningitidis evades the complement system by expression of a polysaccharide capsule and surface proteins sequestering the complement regulator factor H (fH). Meningococcal strains belonging to the sequence type (ST-) 41/44 clonal complex (cc41/44) cause a major proportion of serogroup B meningococcal disease worldwide, but they are also common in asymptomatic carriers. Proteome analysis comparing cc41/44 isolates from invasive disease versus carriage revealed differential expression levels of the outer membrane protein NspA, which binds fH. Deletion of nspA reduced serum resistance and NspA expression correlated with fH sequestration. Expression levels of NspA depended on the length of a homopolymeric tract in the nspA promoter: A 5-adenosine tract dictated low NspA expression, whereas a 6-adenosine motif guided high NspA expression. Screening German cc41/44 strain collections revealed the 6-adenosine motif in 39% of disease isolates, but only in 3.4% of carriage isolates. Thus, high NspA expression is associated with disease, but not strictly required. The 6-adenosine nspA promoter is most common to the cc41/44, but is also found in other hypervirulent clonal complexes. KW - Meningitis KW - Pathogens Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200956 VL - 9 ER -