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Item Advancing the Applicability of Fast Photochemical Oxidation of Proteins to Complex Systems(2016-08) Rinas, Aimee Lynn; Jones, Lisa; Georgiadis, Millie M.; Long, Eric C.; Manicke, NicholasHydroxyl radical protein footprinting coupled with mass spectrometry has become an invaluable technique for protein structural characterization. In this method, hydroxyl radicals react with solvent exposed amino acid side chains producing stable, covalently attached labels. Although this technique yields beneficial information, the extensive list of known oxidation products produced increases the complexity of identifying and quantifying oxidation products. The current methods available for quantifying the extent of oxidation either involve manual analysis steps, or limit the number of searchable modifications or the size of sequence database. This creates a bottleneck which can result in a long and arduous analysis process, which is further compounded in a complex sample. In addition to the data complexity, the peptides containing the oxidation products of hydroxyl radical-mediated protein footprinting experiments are typically much less abundant than their unoxidized counterparts. This is inherent to the design of the experiment as excessive oxidation may lead to undesired conformational changes or unfolding of the protein, skewing the results. Thus, as the complexity of the systems studied using this method expands, the detection and identification of these oxidized species can be increasingly difficult with the limitations of data-dependent acquisition (DDA) and one-dimensional chromatography. The recently published in cell FPOP method exemplifies where this field is headed - larger and more complex systems. This dissertation describes two new methodologies and one new technology for hydroxyl radical-mediated protein footprinting, expanding the applicability of the method. First is development of a new footprinting analysis method for both peptide and residue level analysis, allowing for faster quantification of results. This method utilizes a customized multilevel search workflow developed for an on-market search platform in conjunction with a quantitation platform developed using a free Excel add-in, expediting the analysis process. Second is the application of multidimensional protein identification technology (MudPIT) in combination with hydroxyl radical footprinting as a method to increase the identification of quantifiable peptides in these experiments. Last is the design and implementation of a flow system for in cell FPOP, which hydrodynamically focuses the cells, and when used yielded a 13-fold increase in oxidized proteins and 2 orders of magnitude increase in the dynamic range of the method.Item Characterisation of age and polarity at onset in bipolar disorder(Cambridge University Press, 2021-12) Kalman, Janos L.; Olde Loohuis, Loes M.; Vreeker, Annabel; McQuillin, Andrew; Stahl, Eli A.; Ruderfer, Douglas; Grigoroiu-Serbanescu, Maria; Panagiotaropoulou, Georgia; Ripke, Stephan; Bigdeli, Tim B.; Stein, Frederike; Meller, Tina; Meinert, Susanne; Pelin, Helena; Streit, Fabian; Papiol, Sergi; Adams, Mark J.; Adolfsson, Rolf; Adorjan, Kristina; Agartz, Ingrid; Aminoff, Sofie R.; Anderson-Schmidt, Heike; Andreassen, Ole A.; Ardau, Raffaella; Aubry, Jean-Michel; Balaban, Ceylan; Bass, Nicholas; Baune, Bernhard T.; Bellivier, Frank; Benabarre, Antoni; Bengesser, Susanne; Berrettini, Wade H.; Boks, Marco P.; Bromet, Evelyn J.; Brosch, Katharina; Budde, Monika; Byerley, William; Cervantes, Pablo; Chillotti, Catina; Cichon, Sven; Clark, Scott R.; Comes, Ashley L.; Corvin, Aiden; Coryell, William; Craddock, Nick; Craig, David W.; Croarkin, Paul E.; Cruceanu, Cristiana; Czerski, Piotr M.; Dalkner, Nina; Dannlowski, Udo; Degenhardt, Franziska; Del Zompo, Maria; DePaulo, J. Raymond; Djurovic, Srdjan; Edenberg, Howard J.; Al Eissa, Mariam; Elvsåshagen, Torbjørn; Etain, Bruno; Fanous, Ayman H.; Fellendorf, Frederike; Fiorentino, Alessia; Forstner, Andreas J.; Frye, Mark A.; Fullerton, Janice M.; Gade, Katrin; Garnham, Julie; Gershon, Elliot; Gill, Michael; Goes, Fernando S.; Gordon-Smith, Katherine; Grof, Paul; Guzman-Parra, Jose; Hahn, Tim; Hasler, Roland; Heilbronner, Maria; Heilbronner, Urs; Jamain, Stephane; Jimenez, Esther; Jones, Ian; Jones, Lisa; Jonsson, Lina; Kahn, Rene S.; Kelsoe, John R.; Kennedy, James L.; Kircher, Tilo; Kirov, George; Kittel-Schneider, Sarah; Klöhn-Saghatolislam, Farah; Knowles, James A.; Kranz, Thorsten M.; Lagerberg, Trine Vik; Landen, Mikael; Lawson, William B.; Leboyer, Marion; Li, Qingqin S.; Maj, Mario; Malaspina, Dolores; Manchia, Mirko; Mayoral, Fermin; McElroy, Susan L.; McInnis, Melvin G.; McIntosh, Andrew M.; Medeiros, Helena; Melle, Ingrid; Milanova, Vihra; Mitchell, Philip B.; Monteleone, Palmiero; Monteleone, Alessio Maria; Nöthen, Markus M.; Novak, Tomas; Nurnberger, John I.; O'Brien, Niamh; O'Connell, Kevin S.; O'Donovan, Claire; O'Donovan, Michael C.; Opel, Nils; Ortiz, Abigail; Owen, Michael J.; Pålsson, Erik; Pato, Carlos; Pato, Michele T.; Pawlak, Joanna; Pfarr, Julia-Katharina; Pisanu, Claudia; Potash, James B.; Rapaport, Mark H.; Reich-Erkelenz, Daniela; Reif, Andreas; Reininghaus, Eva; Repple, Jonathan; Richard-Lepouriel, Hélène; Rietschel, Marcella; Ringwald, Kai; Roberts, Gloria; Rouleau, Guy; Schaupp, Sabrina; Scheftner, William A.; Schmitt, Simon; Schofield, Peter R.; Schubert, K. Oliver; Schulte, Eva C.; Schweizer, Barbara; Senner, Fanny; Severino, Giovanni; Sharp, Sally; Slaney, Claire; Smeland, Olav B.; Sobell, Janet L.; Squassina, Alessio; Stopkova, Pavla; Strauss, John; Tortorella, Alfonso; Turecki, Gustavo; Twarowska-Hauser, Joanna; Veldic, Marin; Vieta, Eduard; Vincent, John B.; Xu, Wei; Zai, Clement C.; Zandi, Peter P.; Psychiatric Genomics Consortium (PGC) Bipolar Disorder Working Group; International Consortium on Lithium Genetics (ConLiGen); Colombia-US Cross Disorder Collaboration in Psychiatric Genetics; Di Florio, Arianna; Smoller, Jordan W.; Biernacka, Joanna M.; McMahon, Francis J.; Alda, Martin; Müller-Myhsok, Bertram; Koutsouleris, Nikolaos; Falkai, Peter; Freimer, Nelson B.; Andlauer, Till F.M.; Schulze, Thomas G.; Ophoff, Roel A.; Biochemistry and Molecular Biology, School of MedicineBackground: Studying phenotypic and genetic characteristics of age at onset (AAO) and polarity at onset (PAO) in bipolar disorder can provide new insights into disease pathology and facilitate the development of screening tools. Aims: To examine the genetic architecture of AAO and PAO and their association with bipolar disorder disease characteristics. Method: Genome-wide association studies (GWASs) and polygenic score (PGS) analyses of AAO (n = 12 977) and PAO (n = 6773) were conducted in patients with bipolar disorder from 34 cohorts and a replication sample (n = 2237). The association of onset with disease characteristics was investigated in two of these cohorts. Results: Earlier AAO was associated with a higher probability of psychotic symptoms, suicidality, lower educational attainment, not living together and fewer episodes. Depressive onset correlated with suicidality and manic onset correlated with delusions and manic episodes. Systematic differences in AAO between cohorts and continents of origin were observed. This was also reflected in single-nucleotide variant-based heritability estimates, with higher heritabilities for stricter onset definitions. Increased PGS for autism spectrum disorder (β = -0.34 years, s.e. = 0.08), major depression (β = -0.34 years, s.e. = 0.08), schizophrenia (β = -0.39 years, s.e. = 0.08), and educational attainment (β = -0.31 years, s.e. = 0.08) were associated with an earlier AAO. The AAO GWAS identified one significant locus, but this finding did not replicate. Neither GWAS nor PGS analyses yielded significant associations with PAO. Conclusions: AAO and PAO are associated with indicators of bipolar disorder severity. Individuals with an earlier onset show an increased polygenic liability for a broad spectrum of psychiatric traits. Systematic differences in AAO across cohorts, continents and phenotype definitions introduce significant heterogeneity, affecting analyses.Item Fine-mapping genomic loci refines bipolar disorder risk genes(medRxiv, 2024-02-13) Koromina, Maria; Ravi, Ashvin; Panagiotaropoulou, Georgia; Schilder, Brian M.; Humphrey, Jack; Braun, Alice; Bidgeli, Tim; Chatzinakos, Chris; Coombes, Brandon; Kim, Jaeyoung; Liu, Xiaoxi; Terao, Chikashi; O'Connell, Kevin S.; Adams, Mark; Adolfsson, Rolf; Alda, Martin; Alfredsson, Lars; Andlauer, Till F. M.; Andreassen, Ole A.; Antoniou, Anastasia; Baune, Bernhard T.; Bengesser, Susanne; Biernacka, Joanna; Boehnke, Michael; Bosch, Rosa; Cairns, Murray; Carr, Vaughan J.; Casas, Miquel; Catts, Stanley; Cichon, Sven; Corvin, Aiden; Craddock, Nicholas; Dafnas, Konstantinos; Dalkner, Nina; Dannlowski, Udo; Degenhardt, Franziska; Di Florio, Arianna; Dikeos, Dimitris; Fellendorf, Frederike Tabea; Ferentinos, Panagiotis; Forstner, Andreas J.; Forty, Liz; Frye, Mark; Fullerton, Janice M.; Gawlik, Micha; Gizer, Ian R.; Gordon-Smith, Katherine; Green, Melissa J.; Grigoroiu-Serbanescu, Maria; Guzman-Parra, José; Hahn, Tim; Henskens, Frans; Hillert, Jan; Jablensky, Assen V.; Jones, Lisa; Jones, Ian; Jonsson, Lina; Kelsoe, John R.; Kircher, Tilo; Kirov, George; Kittel-Schneider, Sarah; Kogevinas, Manolis; Landén, Mikael; Leboyer, Marion; Lenger, Melanie; Lissowska, Jolanta; Lochner, Christine; Loughland, Carmel; MacIntyre, Donald; Martin, Nicholas G.; Maratou, Eirini; Mathews, Carol A.; Mayoral, Fermin; McElroy, Susan L.; McGregor, Nathaniel W.; McIntosh, Andrew; McQuillin, Andrew; Michie, Patricia; Milanova, Vihra; Mitchell, Philip B.; Moutsatsou, Paraskevi; Mowry, Bryan; Müller-Myhsok, Bertram; Myers, Richard; Nenadić, Igor; Nöthen, Markus M.; O'Donovan, Claire; O'Donovan, Michael; Ophoff, Roel A.; Owen, Michael J.; Pantelis, Chris; Pato, Carlos; Pato, Michele T.; Patrinos, George P.; Pawlak, Joanna M.; Perlis, Roy H.; Porichi, Evgenia; Posthuma, Danielle; Ramos-Quiroga, Josep Antoni; Reif, Andreas; Reininghaus, Eva Z.; Ribasés, Marta; Rietschel, Marcella; Schall, Ulrich; Schulze, Thomas G.; Scott, Laura; Scott, Rodney J.; Serretti, Alessandro; Shannon Weickert, Cynthia; Smoller, Jordan W.; Soler Artigas, Maria; Stein, Dan J.; Streit, Fabian; Toma, Claudio; Tooney, Paul; Vieta, Eduard; Vincent, John B.; Waldman, Irwin D.; Weickert, Thomas; Witt, Stephanie H.; Hong, Kyung Sue; Ikeda, Masashi; Iwata, Nakao; Świątkowska, Beata; Won, Hong-Hee; Edenberg, Howard J.; Ripke, Stephan; Raj, Towfique; Coleman, Jonathan R. I.; Mullins, Niamh; Biochemistry and Molecular Biology, School of MedicineBipolar disorder (BD) is a heritable mental illness with complex etiology. While the largest published genome-wide association study identified 64 BD risk loci, the causal SNPs and genes within these loci remain unknown. We applied a suite of statistical and functional fine-mapping methods to these loci, and prioritized 22 likely causal SNPs for BD. We mapped these SNPs to genes, and investigated their likely functional consequences by integrating variant annotations, brain cell-type epigenomic annotations, brain quantitative trait loci, and results from rare variant exome sequencing in BD. Convergent lines of evidence supported the roles of SCN2A, TRANK1, DCLK3, INSYN2B, SYNE1, THSD7A, CACNA1B, TUBBP5, PLCB3, PRDX5, KCNK4, AP001453.3, TRPT1, FKBP2, DNAJC4, RASGRP1, FURIN, FES, YWHAE, DPH1, GSDMB, MED24, THRA, EEF1A2, and KCNQ2 in BD. These represent promising candidates for functional experiments to understand biological mechanisms and therapeutic potential. Additionally, we demonstrated that fine-mapping effect sizes can improve performance and transferability of BD polygenic risk scores across ancestrally diverse populations, and present a high-throughput fine-mapping pipeline (https://github.com/mkoromina/SAFFARI).Item Investigations of lipid metabolism in Yarrowia lipolytica(2014-07-31) Blocher-Smith, Ethan Charles; Minto, Robert; Long, Eric C. (Eric Charles); Jones, LisaAn investigation of the lipid metabolism pathway in the yeast Yarrowia lipolytica was conducted. Yarrowia is an oleaginous ascomycete that is capable of growing on many different substrates, which derives its name from its high efficiency of growth on lipids. Once the exogenous lipids are converted into free fatty acids and internalized by the yeast, the primary mode of degradation is through β-oxidation mediated by the peroxisomal oxidases, or POX genes. These enzymes catalyze the formation of a trans double bond, producing the trans-2-enoyl product. Our study looked at the comparison of the Y. lipolytica prototrophic strain against a knockout of the Pox2 gene on the uptake, incorporation, and degradation of relevant fatty acids. To construct this gene knockout, a novel gene deletion method using a combination of Cre recombinase and the AHAS* gene was synthesized, developed, and tested successfully. This knockout system allows for serial deletion of genes with the use of only one resistance marker, with excision of the marker after selection.Item Molecular characterization and clinical outcome of B-cell precursor acute lymphoblastic leukemia with IG-MYC rearrangement(Ferrata-Storti Foundation, 2023-03-01) Bomken, Simon; Enshaei, Amir; Schwalbe, Edward C.; Mikulasova, Aneta; Dai, Yunfeng; Zaka, Masood; Fung, Kent T. M.; Bashton, Matthew; Lim, Huezin; Jones, Lisa; Karataraki, Nefeli; Winterman, Emily; Ashby, Cody; Attarbaschi, Andishe; Bertrand, Yves; Bradtke, Jutta; Buldini, Barbara; Burke, G. A. Amos; Cazzaniga, Giovanni; Gohring, Gudrun; De Groot-Kruseman, Hesta A.; Haferlach, Claudia; Lo Nigro, Luca; Parihar, Mayur; Plesa, Adriana; Seaford, Emma; Sonneveld, Edwin; Strehl, Sabine; Van der Velden, Vincent H. J.; Rand, Vikki; Hunger, Stephen P.; Harrison, Christine J.; Bacon, Chris M.; Van Delft, Frederik W.; Loh, Mignon L.; Moppett, John; Vormoor, Josef; Walker, Brian A.; Moorman, Anthony V.; Russell, Lisa J.; Medicine, School of MedicineRarely, immunophenotypically immature B-cell precursor acute lymphoblastic leukemia (BCP-ALL) carries an immunoglobulin- MYC rearrangement (IG-MYC-r). This can result in diagnostic confusion with Burkitt lymphoma/leukemia and use of individualized treatment schedules of unproven efficacy. Here we compare the molecular characteristics of these conditions and investigate historic clinical outcome data. We identified 90 cases registered in a national BCP-ALL clinical trial/registry. When present, diagnostic material underwent cytogenetic, exome, methylome and transcriptome analyses. The outcomes analyzed were 3-year event-free survival and overall survival. IG-MYC-r was identified in diverse cytogenetic backgrounds, co-existing with either established BCP-ALL-specific abnormalities (high hyperdiploidy, n=3; KMT2A-rearrangement, n=6; iAMP21, n=1; BCR-ABL1, n=1); BCL2/BCL6-rearrangements (n=15); or, most commonly, as the only defining feature (n=64). Within this final group, precursor-like V(D)J breakpoints predominated (8/9) and KRAS mutations were common (5/11). DNA methylation identified a cluster of V(D)J-rearranged cases, clearly distinct from Burkitt leukemia/lymphoma. Children with IG-MYC-r within that subgroup had a 3-year event-free survival of 47% and overall survival of 60%, representing a high-risk BCP-ALL. To develop effective management strategies this group of patients must be allowed access to contemporary, minimal residual disease-adapted, prospective clinical trial protocols.Item The room temperature evaporation behavior of purported azeotropes used as cleaning solutions in art conservation(2014) Carrison, Megan Sara; Goodpaster, John V. (John Vincent); Jones, Lisa; Sardar, Rajesh; Picard, ChristineFinely-tuned solvent mixtures are used by art conservators for the difficult task of safely and selectively removing yellowed varnish, disfiguring grime, and discolored overpaint from the surface of oil paintings. This process is often referred to as “picture cleaning” and depends on the different solubilities of the obfuscating surface materials and the underlying paint medium. However, differential evaporation rates for the solvents used in these carefully formulated cleaning mixtures can change the potency of the mixture over time, which could potentially lead to solutions having solubility characteristics that are ineffective at cleaning, or worse yet, are deleterious to artists’ oil paints. Azeotropic blends of solvents have been proposed as an alternative for maintaining consistent solvent composition throughout the evaporation process while benefiting from their high vapor pressure relative to the pure solvents. Azeotropes are specific combinations of two or more solvents at a precise concentration that behave as a single solvent, maintaining a constant composition in both the liquid and vapor phases. The use of purportedly azeotropic solvent blends has appeared in the art conservation literature for the cleaning of historic objects and paintings. However, these solvent mixtures are taken from tables of azeotropic compositions given at their boiling point. We have studied one of these solutions, a 19:81 vol% mixture of isopropanol and n-hexane. For the first time, the actual evaporation behavior of this purported azeotropic mixture was followed in detail at room temperature conditions. Through the use of rudimentary vapor pressure measurements, gravimetric analysis, as well as sophisticated compositional determinations of both the liquid phase and headspace of evaporating mixtures by gas chromatography, this particular cleaning solution has been shown to be zeotropic (i.e. NOT an azeotrope) under the conditions typical of conservation studios. The true room temperature azeotropic composition was found instead to contain half as much isopropanol at 9.5 vol%. Art conservators should therefore be dubious of purportedly azeotropic mixtures reported at boiling points well above room temperature. Individual azeotropic cleaning blends are best determined chemically prior to their use in art restoration. Furthermore, the introduction of a model paint film to the evaporating room temperature azeotrope was shown to further confound its behavior, calling into question whether solvent systems can be configured to evaporate with constant composition from the surface of an artwork.