Alessandro Mascioni
University of Minnesota
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Featured researches published by Alessandro Mascioni.
Proceedings of the National Academy of Sciences of the United States of America | 2008
Larry R. Masterson; Alessandro Mascioni; Nathaniel J. Traaseth; Susan S. Taylor; Gianluigi Veglia
Allosteric signaling in proteins requires long-range communication mediated by highly conserved residues, often triggered by ligand binding. In this article, we map the allosteric network in the catalytic subunit of protein kinase A using NMR spectroscopy. We show that positive allosteric cooperativity is generated by nucleotide and substrate binding during the transitions through the major conformational states: apo, intermediate, and closed. The allosteric network is disrupted by a single site mutation (Y204A), which also decouples the cooperativity of ligand binding. Because protein kinase A is the prototype for the entire kinome, these findings may serve as a paradigm for describing long-range coupling in other protein kinases.
Biochimica et Biophysica Acta | 2010
Alessandro Mascioni; Franklin J. Moy; Lisa K. McNeil; Ellen Murphy; Breagh E. Bentley; Rosaria Camarda; Deborah A. Dilts; Pamela S. Fink; Viktoria Gusarova; Susan K. Hoiseth; Karl Malakian; Terri Mininni; Elena Novikova; Shuo Lin; Scott Sigethy; Gary W. Zlotnick; Desiree H.H. Tsao
Neisseria meningitidis is a major cause of meningitis. Although protective vaccination is available against some pathogenic serogroups, serogroup B meningococci have been a challenge for vaccinologists. A family of outer membrane lipoproteins, LP2086 (or factor H binding proteins, fHbp), has been shown to elicit bactericidal antibodies and is currently part of a cocktail vaccine candidate. The NMR structure of the variant LP2086-B01 in micellar solution provided insights on the topology of this family of proteins on the biological membrane. Based on flow cytometry experiments on whole meningococcal cells, binding experiments with monoclonal antibodies, and the NMR structure in micellar solution, we previously proposed that LP2086-B01 anchors the outer bacterial membrane through its lipidated N-terminal cysteine, while a flexible 20 residue linker positions the protein above the layer of lipo-oligosaccharides that surrounds the bacteria. This topology was suggested to increase the antigen exposure to the immune system. In the present work, using micellar solution as a membrane mimicking system, we characterized the backbone dynamics of the variant LP2086-B01 in both its lipidated and unlipidated forms. In addition, binding experiments with a Fab fragment derived from the monoclonal MN86-1042-2 were also performed. Our data suggests that due to the length and flexibility of the N-terminal linker, the antigen is not in contact with the micelle, thus making both N- and C-domains highly available to the host immune system. This dynamic model, combined with the binding data obtained with MN86-1042-2, supports our previously proposed arrangement that LP2086-B01 exposes one face to the extracellular space. Binding of MN86-1042-2 antibody shows that the N-domain is the primary target of this monoclonal, providing further indication that this domain is immunologically important for this family of proteins.
Biochimica et Biophysica Acta | 2018
Sarah E.D. Nelson; Kim N. Ha; T. Gopinath; Mara H. Exline; Alessandro Mascioni; David D. Thomas; Gianluigi Veglia
Approximately, 70% of the Ca2+ ion transport into the sarcoplasmic reticulum is catalyzed by the sarcoplasmic reticulum Ca2+-ATPase (SERCA), whose activity is endogenously regulated by phospholamban (PLN). PLN comprises a TM inhibitory region and a cytoplasmic regulatory region that harbors a consensus sequence for cAMP-dependent protein kinase (PKA). The inhibitory region binds the ATPase, reducing its apparent Ca2+ binding affinity. β-adrenergic stimulation activates PKA, which phosphorylates PLN at Ser 16, reversing its inhibitory function. Mutations and post-translational modifications of PLN may lead to dilated cardiomyopathy (DCM) and heart failure. PLNs cytoplasmic region interconverts between a membrane-associated T state and a membrane-detached R state. The importance of these structural transitions on SERCA regulation is emerging, but the effects of natural occurring mutations and their relevance to the progression of heart disease are unclear. Here we use solid-state NMR spectroscopy to investigate the structural dynamics of two lethal PLN mutations, R9C and R25C, which lead to DCM. We found that the R25C mutant enhances the dynamics of PLN and shifts the conformational equilibrium toward the R state confirmation, whereas the R9C mutant drives the amphipathic cytoplasmic domain toward the membrane-associate state, enriching the T state population. The changes in membrane interactions caused by these mutations may explain the aberrant regulation of SERCA.
Biomolecular Nmr Assignments | 2009
Alessandro Mascioni; J. Jacob; F. Moy; D. Dilts; P. Fink; K. Malakian; S. Sigethy; Y. Wen; E. Novikova; G. W. Zlotnick; D. H. H. Tsao
LP2086 is a lipidated outer membrane protein from Neisseria meningitidis that elicits bactericidal antibodies and represents a promising vaccine candidate against meningococcal infections. Here we report the backbone and side-chain assignment for two forms of LP2086: non-lipidated in aqueous buffer and the lipidated protein in micellar solution.
Biophysical Journal | 2003
Jamillah Zamoon; Alessandro Mascioni; David D. Thomas; Gianluigi Veglia
Biochemistry | 2002
Alessandro Mascioni; Christine B. Karim; George Barany; David D. Thomas; Gianluigi Veglia
Journal of the American Chemical Society | 2002
Alessandro Mascioni; Christine B. Karim; Jamillah Zamoon; David D. Thomas; Gianluigi Veglia
Biochemistry | 2006
Jarrod J. Buffy; Nathaniel J. Traaseth; Alessandro Mascioni; Peter L. Gor'kov; Eduard Y. Chekmenev; William W. Brey; Gianluigi Veglia
Biopolymers | 2003
Alessandro Mascioni; Fernando Porcelli; Udayar Ilangovan; Ayyalusamy Ramamoorthy; Gianluigi Veglia
Journal of the American Chemical Society | 2003
Bethany Buck; Alessandro Mascioni; Lawrence Que; Gianluigi Veglia