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Keller Andreas, Malaspina Dolores
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Hidden consequences of olfactory dysfunction: a patient report series.

BMC ear, nose, and throat disorders 2013 2013 Jul 23; 13(1):8-8
BACKGROUND: The negative consequences of olfactory dysfunction for the quality of life are not widely appreciated and the condition is therefore often ignored or trivialized. METHODS: 1,000 patients with olfactory dysfunction participated in an online study by submitting accounts of their subjective experiences of how they have been affected by their condition. In addition, they were given the chance to answer 43 specific questions about the consequences of their olfactory dysfunction. RESULTS: Although there are less practical problems associated with impaired or distorted odor perception than with impairments in visual or auditory perception, many affected individuals report experiencing olfactory dysfunction as a debilitating condition. Smell loss-induced social isolation and smell loss-induced anhedonia can severely affect quality of life. CONCLUSIONS: Olfactory dysfunction is a serious condition for those affected by it and it deserves more attention from doctors who treat affected patients as well as from scientist who research treatment options.
Weixlbaumer A, Leon K, Landick R, Darst SA
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Structural Basis of Transcriptional Pausing in Bacteria

CELL 2013 JAN 31; 152(3):431-441
Transcriptional pausing by multisubunit RNA polymerases (RNAPs) is a key mechanism for regulating gene expression in both prokaryotes and eukaryotes and is a prerequisite for transcription termination. Pausing and termination states are thought to arise through a common, elemental pause state that is inhibitory for nucleotide addition. We report three crystal structures of Thermus RNAP elemental paused elongation complexes (ePECs). The structures reveal the same relaxed, open-clamp RNAP conformation in the ePEC that may arise by failure to re-establish DNA contacts during translocation. A kinked bridge-helix sterically blocks the RNAP active site, explaining how this conformation inhibits RNAP catalytic activity. Our results provide a framework for understanding how RNA hairpin formation stabilizes the paused state and how the ePEC intermediate facilitates termination.
Crequer A, Picard C, Pedergnana V, Lim A, Zhang SY, Abel L, Majewski S, Casanova JL, Jablonska S, Orth G, Jouanguy E
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EVER2 Deficiency is Associated with Mild T-cell Abnormalities

JOURNAL OF CLINICAL IMMUNOLOGY 2013 JAN; 33(1):14-21
Epidermodysplasia verruciformis (EV) is a rare genodermatosis characterized by persistent flat warts or pityriasis versicolor-like lesions caused by betapapillomaviruses (EV-HPVs). Autosomal recessive EVER1 and EVER2 deficiencies account for EV in most patients. The mechanisms by which mutations in these partners of the Zinc transporter ZnT1 impair host defense against EV-HPVs are still poorly understood. Keratinocytes of EVER-deficient patients display an alteration of zinc homeostasis and an enhanced proliferative activity. Since EVER proteins are highly expressed in T lymphocytes, we aimed to assess the impact of EVER2 deficiency on T-cell development and function. We studied circulating lymphocyte populations in three adult EV patients sharing the same EVER2 mutation (T150fsX3). We found a normal count of CD4(+) and CD8(+) T cells and a normal proliferative capacity in response to antiCD3 stimulation. However, we observed a significant increase of memory CD4(+) and effector memory CD8(+) T cells, a bias of the TCR V alpha beta and V gamma delta repertoires and an increase of skin-homing CD4(+) T-cell subsets. Our findings suggest that EVER2-deficient patients display mild T-cell abnormalities. It remains unclear whether these abnormalities result from EVER deficiency, chronic EV-HPV infection, or both.
Grammel Markus, Hang Howard C
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Identification of lysine acetyltransferase substrates using bioorthogonal chemical proteomics.

Methods in molecular biology (Clifton, N.J.) 2013 2013; 981(?):201-10
Bioorthogonal chemical proteomics is a valuable method to identify enzyme-specific substrates, a challenging task by traditional biochemical standards. The addition of recombinant enzyme and alkynyl chemical reporter to complex protein mixtures, such as cell lysates, allows the detection and identification of modified substrates. Proteins that have been modified with the chemical reporter can be selectively labeled with fluorescent dyes for detection or affinity tags for biochemical enrichment and subsequent identification by mass spectrometry. Here, we describe the detection and identification of substrates of the lysine acetyltransferase p300 in nuclear extracts using the chemical reporter 4-pentynoyl-CoA.
Kishore Sandeep, Scott Jacob
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Global cancer disparity highlighted.

Journal of neurosciences in rural practice 2013 2013-Aug; 4(Suppl 1):S1-2
Krajnc M, Storgel N, Brezavscek AH, Ziherl P
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A tension-based model of flat and corrugated simple epithelia

SOFT MATTER 2013; 9(34):8368-8377
We theoretically study the shape of single-cell-thick epithelium consisting of incompressible fluid cells. The cells carry a surface energy associated with cortex and interfacial tension as well as cell-cell adhesion such that the basal, the lateral, and the apical cell faces are each characterized by a specific effective surface tension. In our reduced-dimensionality version of the model, the epithelium consists of a linear chain of quadrilateral cells. We explore the 1D periodic minimal-energy configurations of the tissue, finding that they include both flat and corrugated states. As the differential apical-basal tension is increased, the epithelium undergoes a transition from the thin flat state to the expanded corrugated state which is then compactified and transformed into the collapsed corrugated state and eventually replaced by the thick flat state. Apart from the restriction to the globally uncurved space, the corrugated states are shaped by apical constriction and cell impenetrability. We also analyze the elastic properties of these states, focusing on the stretching modulus and the torque exerted on the substrate.
Collymore Chereen, Rasmussen Skye, Tolwani Ravi J
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Gavaging adult zebrafish.

Journal of visualized experiments : JoVE 2013 2013 Aug 11; ?(78):?
The zebrafish has become an important in vivo model in biomedical research. Effective methods must be developed and utilized to deliver compounds or agents in solutions for scientific research. Current methods for administering compounds orally to adult zebrafish are inaccurate due to variability in voluntary consumption by the fish. A gavage procedure was developed to deliver precise quantities of infectious agents to zebrafish for study in biomedical research. Adult zebrafish over 6 months of age were anesthetized with 150 mg/L of buffered MS-222 and gavaged with 5 mul of solution using flexible catheter implantation tubing attached to a cut 22-G needle tip. The flexible tubing was lowered into the oral cavity of the zebrafish until the tip of the tubing extended past the gills (approximately 1 cm). The solution was then injected slowly into the intestinal tract. This method was effective 88% of the time, with fish recovering uneventfully. This procedure is also efficient as one person can gavage 20-30 fish in one hour. This method can be used to precisely administer agents for infectious diseases studies, or studies of other compounds in adult zebrafish.
The cloning of DNA directly from environmental samples provides a means to functionally access biosynthetic gene clusters present in the genomes of the large fraction of bacteria that remains recalcitrant to growth in the laboratory. Herein, we demonstrate a method by which complementation of phosphopantetheine transferase deletion mutants can be used to restore siderophore biosynthesis and to therefore selectively enrich eDNA libraries for nonribosomal peptide synthetase (NAPS) and polyketide synthase (PKS) gene sequences to unprecedented levels. The common use of NRPS/PKS-derived siderophores across bacterial taxa makes this method generalizable and should allow for the facile selective enrichment of NRPS/PKS-containing biosynthetic gene clusters from large environmental DNA libraries using a wide variety of phylogenetically diverse bacterial hosts.
Feklistov A
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RNA polymerase: in search of promoters

BLAVATNIK AWARDS FOR YOUNG SCIENTISTS 2012 2013; 1293(?):25-32
Transcription initiation is a key event in the regulation of gene expression. RNA polymerase (RNAP), the central enzyme of transcription, is able to efficiently locate promoters in the genome, carry out promoter opening, and initiate RNA synthesis. All the substeps of transcription initiation are subject to complex cellular regulation. Understanding the molecular details of each step in the promoter-opening pathway is essential for a complete mechanistic and quantitative picture of gene expression. In this minireview, primarily using bacterial RNAP as an example, I briefly summarize some of the key recent advances in our understanding of the mechanisms of promoter search and promoter opening.
Jang Heeun, Bargmann Cornelia I
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Acute Behavioral Responses to Pheromones in C. elegans (Adult Behaviors: Attraction, Repulsion).

Methods in molecular biology (Clifton, N.J.) 2013 2013; 1068(?):285-92
The pheromone drop test is a simple and robust behavioral assay to quantify acute avoidance of pheromones in C. elegans, and the suppression of avoidance by attractive pheromones. In the pheromone drop test, water-soluble C. elegans pheromones are individually applied to animals that are freely moving on a large plate. Upon encountering a repellent, each C. elegans animal may or may not try to escape by making a long reversal. The fraction of animals that make a long reversal response indicates the repulsiveness of a given pheromone to a specific genotype/strain of C. elegans. Performing the drop test in the presence of bacterial food enhances the avoidance response to pheromones. Attraction to pheromones can be assayed by the suppression of reversals to repulsive pheromones or by the suppression of the basal reversal rate to buffer.