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139


Proline Hydroxylation Primes Protein Kinases for Autophosphorylation and Activation

Lee, Sang Bae; Ko, Aram; Oh, Young Taek; Shi, Peiguo; D'Angelo, Fulvio; Frangaj, Brulinda; Koller, Antonius; Chen, Emily I; Cardozo, Timothy; Iavarone, Antonio; Lasorella, Anna
Activation of dual-specificity tyrosine-phosphorylation-regulated kinases 1A and 1B (DYRK1A and DYRK1B) requires prolyl hydroxylation by PHD1 prolyl hydroxylase. Prolyl hydroxylation of DYRK1 initiates a cascade of events leading to the release of molecular constraints on von Hippel-Lindau (VHL) ubiquitin ligase tumor suppressor function. However, the proline residue of DYRK1 targeted by hydroxylation and the role of prolyl hydroxylation in tyrosine autophosphorylation of DYRK1 are unknown. We found that a highly conserved proline in the CMGC insert of the DYRK1 kinase domain is hydroxylated by PHD1, and this event precedes tyrosine autophosphorylation. Mutation of the hydroxylation acceptor proline precludes tyrosine autophosphorylation and folding of DYRK1, resulting in a kinase unable to preserve VHL function and lacking glioma suppression activity. The consensus proline sequence is shared by most CMGC kinases, and prolyl hydroxylation is essential for catalytic activation. Thus, formation of prolyl-hydroxylated intermediates is a novel mechanism of kinase maturation and likely a general mechanism of regulation of CMGC kinases in eukaryotes.
PMID: 32640193
ISSN: 1097-4164
CID: 4538932

Convergent Evolution of Neutralizing Antibodies to Staphylococcus aureus γ-Hemolysin C That Recognize an Immunodominant Primary Sequence-Dependent B-Cell Epitope

Hernandez, David N; Tam, Kayan; Shopsin, Bo; Radke, Emily E; Law, Karen; Cardozo, Timothy; Torres, Victor J; Silverman, Gregg J
Staphylococcus aureus infection is a major public health threat in part due to the spread of antibiotic resistance and repeated failures to develop a protective vaccine. Infection is associated with production of virulence factors that include exotoxins that attack host barriers and cellular defenses, such as the leukocidin (Luk) family of bicomponent pore-forming toxins. To investigate the structural basis of antibody-mediated functional inactivation of Luk toxins, we generated a panel of murine monoclonal antibodies (MAbs) that neutralize host cell killing by the γ-hemolysin HlgCB. By biopanning these MAbs against a phage-display library of random Luk peptide fragments, we identified a small subregion within the rim domain of HlgC as the epitope for all the MAbs. Within the native holotoxin, this subregion folds into a conserved β-hairpin structure, with exposed key residues, His252 and Tyr253, required for antibody binding. On the basis of the phage-display results and molecular modeling, a 15-amino-acid synthetic peptide representing the minimal epitope on HlgC (HlgC241-255) was designed, and preincubation with this peptide blocked antibody-mediated HIgCB neutralization. Immunization of mice with HlgC241-255 or the homologous LukS246-260 subregion peptide elicited serum antibodies that specifically recognized the native holotoxin subunits. Furthermore, serum IgG from patients who were convalescent for invasive S. aureus infection showed neutralization of HlgCB toxin activity ex vivo, which recognized the immunodominant HlgC241-255 peptide and was dependent on His252 and Tyr253 residues. We have thus validated an efficient, rapid, and scalable experimental workflow for identification of immunodominant and immunogenic leukotoxin-neutralizing B-cell epitopes that can be exploited for new S. aureus-protective vaccines and immunotherapies.
PMID: 32546616
ISSN: 2150-7511
CID: 4486272

Ubiquitylation of the ER-Shaping Protein Lunapark via the CRL3KLHL12 Ubiquitin Ligase Complex

Yuniati, Laurensia; Lauriola, Angela; Gerritsen, Manouk; Abreu, Susana; Ni, Eric; Tesoriero, Chiara; Onireti, Jacob O; Low, Teck Yew; Heck, Albert J R; Vettori, Andrea; Cardozo, Timothy; Guardavaccaro, Daniele
Cullin-RING ligases (CRLs) control key cellular processes by promoting ubiquitylation of a multitude of soluble cytosolic and nuclear proteins. Subsets of CRL complexes are recruited and activated locally at cellular membranes; however, few CRL functions and substrates at these distinct cellular compartments are known. Here, we use a proteomic screen to identify proteins that are ubiquitylated at cellular membranes and found that Lunapark, an endoplasmic reticulum (ER)-shaping protein localized to ER three-way junctions, is ubiquitylated by the CRL3KLHL12 ubiquitin ligase. We demonstrate that Lunapark interacts with mechanistic target of rapamycin complex-1 (mTORC1), a central cellular regulator that coordinates growth and metabolism with environmental conditions. We show that mTORC1 binds Lunapark specifically at three-way junctions, and lysosomes, where mTORC1 is activated, make contact with three-way junctions where Lunapark resides. Inhibition of Lunapark ubiquitylation results in neurodevelopmental defects indicating that KLHL12-dependent ubiquitylation of Lunapark is required for normal growth and development.
PMID: 32433973
ISSN: 2211-1247
CID: 4444402

SARS-CoV-2 viral spike G614 mutation exhibits higher case fatality rate

Becerra-Flores, Manuel; Cardozo, Timothy
AIM/OBJECTIVE:The COVID pandemic is caused by infection with the SARS-CoV-2 virus. The major mutation detected to date in the SARS-CoV-2 viral envelope spike protein, which is responsible for virus attachment to the host and is also the main target for host antibodies, is a mutation of an aspartate (D) at position 614 found frequently in Chinese strains to a glycine (G). We sought to infer health impact of this mutation. RESULT/RESULTS:Increased case fatality rate correlated strongly with the proportion of viruses bearing G614 on a country by country basis. The amino acid at position 614 occurs at an internal protein interface of the viral spike, and the presence of G at this position was calculated to destabilize a specific conformation of the viral spike, within which the key host receptor binding site is more accessible. CONCLUSION/CONCLUSIONS:These results imply that G614 is a more pathogenic strain of SARS-CoV-2, which may influence vaccine design. The prevalence of this form of the virus should also be included in epidemiologic models predicting the COVID-19 health burden and fatality over time in specific regions. Physicians should be aware of this characteristic of the virus to anticipate the clinical course of infection.
PMID: 32374903
ISSN: 1742-1241
CID: 4437192

Palmitoylation of the KATP channel Kir6.2 subunit promotes channel opening by regulating PIP2 sensitivity

Yang, Hua-Qian; Martinez-Ortiz, Wilnelly; Hwang, JongIn; Fan, Xuexin; Cardozo, Timothy J; Coetzee, William A
A physiological role for long-chain acyl-CoA esters to activate ATP-sensitive K+ (KATP) channels is well established. Circulating palmitate is transported into cells and converted to palmitoyl-CoA, which is a substrate for palmitoylation. We found that palmitoyl-CoA, but not palmitic acid, activated the channel when applied acutely. We have altered the palmitoylation state by preincubating cells with micromolar concentrations of palmitic acid or by inhibiting protein thioesterases. With acyl-biotin exchange assays we found that Kir6.2, but not sulfonylurea receptor (SUR)1 or SUR2, was palmitoylated. These interventions increased the KATP channel mean patch current, increased the open time, and decreased the apparent sensitivity to ATP without affecting surface expression. Similar data were obtained in transfected cells, rat insulin-secreting INS-1 cells, and isolated cardiac myocytes. Kir6.2ΔC36, expressed without SUR, was also positively regulated by palmitoylation. Mutagenesis of Kir6.2 Cys166 prevented these effects. Clinical variants in KCNJ11 that affect Cys166 had a similar gain-of-function phenotype, but was more pronounced. Molecular modeling studies suggested that palmitoyl-C166 and selected large hydrophobic mutations make direct hydrophobic contact with Kir6.2-bound PIP2 Patch-clamp studies confirmed that palmitoylation of Kir6.2 at Cys166 enhanced the PIP2 sensitivity of the channel. Physiological relevance is suggested since palmitoylation blunted the regulation of KATP channels by α1-adrenoreceptor stimulation. The Cys166 residue is conserved in some other Kir family members (Kir6.1 and Kir3, but not Kir2), which are also subject to regulated palmitoylation, suggesting a general mechanism to control the open state of certain Kir channels.
PMID: 32332165
ISSN: 1091-6490
CID: 4402522

How polypharmacologic is each chemogenomics library?

Ni, Eric; Kwon, Eehjoe; Young, Lauren M; Felsovalyi, Klara; Fuller, Jennifer; Cardozo, Timothy
Aim/UNASSIGNED:High-throughput phenotypic screens have emerged as a promising avenue for small-molecule drug discovery. The challenge faced in high-throughput phenotypic screens is target deconvolution once a small molecule hit is identified. Chemogenomics libraries have emerged as an important tool for meeting this challenge. Here, we investigate their target-specificity by deriving a 'polypharmacology index' for broad chemogenomics screening libraries. Methods/UNASSIGNED:All known targets of all the compounds in each library were plotted as a histogram and fitted to a Boltzmann distribution, whose linearized slope is indicative of the overall polypharmacology of the library. Results & conclusion/UNASSIGNED:Comparison of libraries clearly distinguished the most target-specific library, which might be assumed to be more useful for target deconvolution in a phenotypic screen.
PMCID:7052528
PMID: 32149277
ISSN: 2631-3316
CID: 4349602

Modulating the extracellular TCR-CD3 interaction to identify novel immunotherapy targets against melanoma [Meeting Abstract]

Natarajan, Aswin; Velmurugu, Yogambigai; Zhou, Yuan; Ge, Chenghao; Nadarajah, Vidushan; Felsovalyi, Klara; Cardozo, Timothy J.; Bracken, Clay; Zhu, Cheng; Krogsgaard, Michelle
ISI:000514869700017
ISSN: 1479-5876
CID: 4345052

Unbiased identification of immunogenic Staphylococcus aureus leukotoxin B-cell epitopes

Hernandez, David N; Tam, Kayan; Shopsin, Bo; Radke, Emily; Kolahi, Pegah; Copin, Richard; Stubbe, François-Xavier; Cardozo, Timothy; Torres, Victor J; Silverman, Gregg J
Unbiased identification of individual, immunogenic B-cell epitopes in major antigens of a pathogen remains a technology challenge for vaccine discovery. We therefore developed a platform for rapid phage display screening of deep recombinant libraries consisting of as little as a single major pathogen antigen. Using the bi-component pore-forming leukocidin (Luks) exotoxins of the major pathogen Staphylococcus aureus (Sa) as a prototype, we randomly fragmented and separately ligated the Hemolysin gamma A (HlgA) and LukS genes into a custom-built, phage-display system, termed pComb-Opti8. Deep sequence analysis of barcoded amplimers of the HlgA and LukS gene fragment libraries demonstrated that biopannng against a cross-reactive anti-Luk mAb recovered convergent molecular clones with short overlapping homologous sequences. We thereby identified an 11-amino acid sequence that is highly conserved in four Luk toxin subunits, and is ubiquitous in representation within Sa clinical isolates. The isolated 11-amino acid peptide probe was predicted to retain the native 3D-conformation seen within the Luk holotoxin. Indeed, this peptide was recognized by the selecting anti-Luk mAb, and using mutated peptides we showed that a particular amino acid side-chain was essential for these interactions. Furthermore, murine immunization with this peptide elicited IgG-responses that were highly reactive with both the autologous synthetic peptide and the full-length Luk toxin homologues. Thus, using a gene fragment, phage-display based pipeline, we have identified and validated immunogenic B-cell epitopes that are cross-reactive between members of the pore-forming leukocidin family. This approach could be harnessed to identify novel epitopes for a much needed Sa-protective subunit vaccine.
PMID: 32014894
ISSN: 1098-5522
CID: 4301262

Historeceptomics: Integrating a drug's multiple targets (polypharmacology) with their expression pattern in human tissues

Chapter by: Cardozo, Timothy
in: Multi-Target Drug Design Using Chem-Bioinformatic Approaches by
New York : Humana Press, 2018
pp. 517-528
ISBN: 978-1-4939-8732-0
CID: 3566512

Mucosal elicitation of anti-V2, A4B7-site-targeted antibodies [Meeting Abstract]

Becerra-Flores, M; Patskovsky, Y; Shmelkov, S; Bissa, M; De, Castro I S; Franchini, G; Cardozo, T
Background: Mucosal immunity may be critical to protection from HIV acquisition. Serum antibodies (Abs) targeted specifically to the region of the V2 loop harboring HIV's a4b7 integrin receptor binding site were associated with protection from HIV acquisition in humans. Mucosal Abs of this type may have been further associated with protection in a matched non-human primate model. Cholera toxin B (CTB) is a powerful mucosal adjuvant. We engineered CTB to display the SIVmac251 region of the V2 loop harboring the a4b7 site for testing in Rhesus macaques.
Method(s): The SIVmac251 a4b7 site was fused to CTB and the integrity of the immunogen was confirmed by X-ray crystallography. Antigenicity of the construct was confirmed with the ITS-12 monoclonal antibody. Serum immunogenicity was tested in rabbits and mucosal immunogenicity in young male Rhesus macaques. The macaque study compares 5 intramuscular (IM) and rectal topical co-administrations of CTB-V2 over 24 weeks to a matched-timeline regimen of two sequential DNA SIV gp120 immunizations followed by three ALVAC-SIV immunizations, the last two of which are coadministered with the IM and mucosal CTB-V2 protein boost.
Result(s): The engineered CTB-V2 protein binds galactose, which approximates mucosal GM1-gangliosides, binds ITS-12 potently and elicits titers >10k against the SIVmac251 a4b7 site in 5 of 5 rabbits. Rhesus macaques were successfully inoculated rectally with 200ug of this protein and tolerated the immunization well. The serum and mucosal responses were profiled.
Conclusion(s): Anti-V2, a4b7-site-targeted antibodies may be elicited by mucosal application of an engineered, validated CTB-V2 immunogen. Comparison to potent ALVAC-based regimens may provide insight into protective immune responses elicited by vaccination
EMBASE:625283457
ISSN: 1931-8405
CID: 3528222