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Found 37769 matches. Displaying 9591-9600
Dupre C, Lovett-Barron M, Pfaff DW, Kow LM
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Histaminergic responses by hypothalamic neurons that regulate lordosis and their modulation by estradiol

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 2010 JUL 6; 107(27):12311-12316
How do fluctuations in the level of generalized arousal of the brain affect the performance of specific motivated behaviors, such as sexual behaviors that depend on sexual arousal? A great deal of previous work has provided us with two important starting points in answering this question: (i) that histamine (HA) serves generalized CNS arousal and (ii) that heightened electrical activity of neurons in the ventromedial nucleus of the hypothalamus (VMN) is necessary and sufficient for facilitating the primary female sex behavior in laboratory animals, lordosis behavior. Here we used patch clamp recording technology to analyze HA effects on VMN neuronal activity. The results show that HA acting through H1 receptors (H1R) depolarizes these neurons. Further, acute administration of estradiol, an estrogen necessary for lordosis behavior to occur, heightens this effect. Hyperpolarization, which tends to decrease excitability and enhance inhibition, was not affected by acute estradiol or mediated by H1R but was mediated by other HA receptor subtypes, H2 and H3. Sampling of mRNA from individual VMN neurons showed colocalization of expression of H1 receptor mRNA with estrogen receptor (ER)-alpha mRNA but also revealed ER colocalization with the other HA receptor subtypes and colocalization of different subtypes with each other. The latter finding provides the molecular basis for complex "push-pull" regulation of VMN neuronal excitability by HA. Thus, in the simplest causal route, HA, acting on VMN neurons through H1R provides a mechanism by which elevated states of generalized CNS arousal can foster a specific estrogen-dependent, aroused behavior, sexual behavior.
Franzese G, Hernando-Martinez A, Kumar P, Mazza MG, Stokely K, Strekalova EG, de los Santos F, Stanley HE
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Phase transitions and dynamics of bulk and interfacial water

JOURNAL OF PHYSICS-CONDENSED MATTER 2010 JUL 21; 22(28):? Article 284103
New experiments on water at the surface of proteins at very low temperature display intriguing dynamic behaviors. The extreme conditions of these experiments make it difficult to explore the wide range of thermodynamic state points needed to offer a suitable interpretation. Detailed simulations suffer from the same problem, where equilibration times at low temperature become extremely long. We show how Monte Carlo simulations and mean field calculations using a tractable model of water help interpret the experimental results. Here we summarize the results for bulk water and investigate the thermodynamic and dynamic properties of supercooled water at an interface.
Yuan P, Leonetti MD, Pico AR, Hsiung YC, MacKinnon R
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Structure of the Human BK Channel Ca2+-Activation Apparatus at 3.0 angstrom Resolution

SCIENCE 2010 JUL 9; 329(5988):182-186
High-conductance voltage-and Ca2+-activated K+ (BK) channels encode negative feedback regulation of membrane voltage and Ca2+ signaling, playing a central role in numerous physiological processes. We determined the x-ray structure of the human BK Ca2+ gating apparatus at a resolution of 3.0 angstroms and deduced its tetrameric assembly by solving a 6 angstrom resolution structure of a Na+-activated homolog. Two tandem C-terminal regulator of K+ conductance (RCK) domains from each of four channel subunits form a 350-kilodalton gating ring at the intracellular membrane surface. A sequence of aspartic amino acids that is known as the Ca2+ bowl, and is located within the second of the tandem RCK domains, creates four Ca2+ binding sites on the outer perimeter of the gating ring at the "assembly interface" between RCK domains. Functionally important mutations cluster near the Ca2+ bowl, near the "flexible interface" between RCK domains, and on the surface of the gating ring that faces the voltage sensors. The structure suggests that the Ca2+ gating ring, in addition to regulating the pore directly, may also modulate the voltage sensor.
Kim HS, Cross GAM
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TOPO3 alpha Influences Antigenic Variation by Monitoring Expression-Site-Associated VSG Switching in Trypanosoma brucei

PLOS PATHOGENS 2010 JUL; 6(7):? Article e1000992
Homologous recombination (HR) mediates one of the major mechanisms of trypanosome antigenic variation by placing a different variant surface glycoprotein (VSG) gene under the control of the active expression site (ES). It is believed that the majority of VSG switching events occur by duplicative gene conversion, but only a few DNA repair genes that are central to HR have been assigned a role in this process. Gene conversion events that are associated with crossover are rarely seen in VSG switching, similar to mitotic HR. In other organisms, TOPO3 alpha (Top3 in yeasts), a type IA topoisomerase, is part of a complex that is involved in the suppression of crossovers. We therefore asked whether a related mechanism might suppress VSG recombination. Using a set of reliable recombination and switching assays that could score individual switching mechanisms, we discovered that TOPO3 alpha function is conserved in Trypanosoma brucei and that TOPO3 alpha plays a critical role in antigenic switching. Switching frequency increased 10-40-fold in the absence of TOPO3 alpha and this hyper-switching phenotype required RAD51. Moreover, the preference of 70-bp repeats for VSG recombination was mitigated, while homology regions elsewhere in ES were highly favored, in the absence of TOPO3 alpha. Our data suggest that TOPO3 alpha may remove undesirable recombination intermediates constantly arising between active and silent ESs, thereby balancing ES integrity against VSG recombination.
Chen J, Darst SA, Thirumalai D
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Promoter melting triggered by bacterial RNA polymerase occurs in three steps

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 2010 JUL 13; 107(28):12523-12528
RNA synthesis, carried out by DNA-dependent RNA polymerase (RNAP) in a process called transcription, involves several stages. In bacteria, transcription initiation starts with promoter recognition and binding of RNAP holoenzyme, resulting in the formation of the closed (R . P(c)) RNAP-promoter DNA complex. Subsequently, a transition to the open R . P(o) complex occurs, characterized by separation of the promoter DNA strands in an approximately 12 base-pair region to form the transcription bubble. Using coarse-grained self-organized polymer models of Thermus aquatics RNAP holoenzyme and promoter DNA complexes, we performed Brownian dynamics simulations of the R . P(c) --> R . P(o) transition. In the fast trajectories, unwinding of the promoter DNA begins by local melting around the -10 element, which is followed by sequential unzipping of DNA till the +2 site. The R . P(c) --> R . P(o) transition occurs in three steps. In step I, dsDNA melts and the nontemplate strand makes stable interactions with RNAP. In step II, DNA scrunches into RNA polymerase and the downstream base pairs sequentially open to form the transcription bubble, which results in strain build up. Subsequently, downstream dsDNA bending relieves the strain as R . P(o) forms. Entry of the dsDNA into the active-site channel of RNAP requires widening of the channel, which occurs by a swing mechanism involving transient movements of a subdomain of the beta subunit caused by steric repulsion with the DNA template strand. If premature local melting away from the -10 element occurs first then the transcription bubble formation is slow involving reformation of the opened base pairs and subsequent sequential unzipping as in the fast trajectories.
Bethke S, Aaltonen T, Adelman J, Alvarez Gonzalez B, Amerio S, Amidei D, Anastassov A, Antos J, Apollinari G, Apresyan A, Arisawa T, Artikov A, Ashmanskas W, Azzurri P, Badgett W, Barnett BA, Bartsch V, Beecher D, Behari S, Bellettini G, Benjamin D, Bisello D, Bizjak I, Blocker C, Blumenfeld B, Bocci A, Boisvert V, Bolla G, Bortoletto D, Boudreau J, Bridgeman A, Brigliadori L, Bromberg C, Brubaker E, Budagov J, Budd HS, Budd S, Burke S, Burkett K, Busetto G, Bussey P, Byrum K, Cabrera S, Calancha C, Campanelli M, Canelli F, Carls B, Carosi R, Carrillo S, Casal B, Casarsa M, Castro A, Catastini P, Cauz D, Cavaliere V, Chang SH, Chen YC, Chertok M, Chiarelli G, Chlachidze G, Cho K, Chokheli D, Chou JP, Chung K, Chung YS, Ciobanu CI, Ciocci MA, Clark A, Clark D, Compostella G, Convery ME, Conway J, Cordelli M, Cortiana G, Cox CA, Cox DJ, Crescioli F, Cuenca Almenar C, Cuevas J, Cully JC, Dagenhart D, Datta M, Davies T, de Barbaro P, Dell'Orso M, Demortier L, Deng J, Deninno M, di Giovanni G, Di Ruzza B, Dittmann JR, Donati S, Donini J, Dorigo T, Efron J, Erbacher R, Errede D, Errede S, Eusebi R, Fedorko WT, Fernandez JP, Field R, Flanagan G, Forrest R, Frank MJ, Franklin M, Freeman JC, Furic I, Gallinaro M, Galyardt J, Garberson F, Garcia JE, Garfinkel AF, Genser K, Gerberich H, Gerdes D, Giakoumopoulou V, Giannetti P, Gibson K, Gimmell JL, Ginsburg CM, Giokaris N, Giordani M, Giromini P, Giurgiu G, Glagolev V, Glenzinski D, Goldschmidt N, Golossanov A, Gomez G, Goncharov M, Gonzalez O, Gorelov I, Goshaw AT, Goulianos K, Gresele A, Grinstein S, Guimaraes da Costa J, Gunay-Unalan Z, Hahn K, Hahn SR, Han BY, Han JY, Happacher F, Hare M, Harris RM, Hartz M, Hatakeyama K, Hewamanage S, Hidas D, Hill CS, Hocker A, Hou S, Hughes RE, Huston J, Incandela J, Ivanov A, Jeon EJ, Jha MK, Jindariani S, Johnson W, Jones M, Joo KK, Jun SY, Jung JE, Kar D, Kato Y, Kilminster B, Kim DH, Kim HS, Kim HW, Kim JE, Kim MJ, Kim SB, Kim YK, Kirsch L, Klimenko S, Knuteson B, Ko BR, Kong DJ, Konigsberg J, Korytov A, Krop D, Krumnack N, Kruse M, Krutelyov V, Kulkarni N, Kusakabe Y, Kwang S, Laasanen AT, Lami S, Lander RL, Lannon K, Latino G, Lazzizzera I, Lee HS, Leone S, Lindgren M, Lister A, Litvintsev DO, Loreti M, Lovas L, Lucchesi D, Lukens P, Lungu G, Lysak R, Madrak R, Maeshima K, Makhoul K, Maki T, Maksimovic P, Manousakis-Katsikakis A, Margaroli F, Marino CP, Martin V, Martinez-Ballarin R, Mathis M, Mazzanti P, Mehtala P, Merkel P, Mesropian C, Miao T, Miladinovic N, Miller R, Mills C, Mitra A, Mitselmakher G, Moggi N, Moon CS, Moore R, Mukherjee A, Mumford R, Mussini M, Nachtman J, Nakano I, Napier A, Necula V, Norniella O, Nurse E, Oh SH, Oh YD, Oksuzian I, Okusawa T, Orava R, Pagan Griso S, Palencia E, Papadimitriou V, Paramonov AA, Parks B, Pauletta G, Paulini M, Pellett D, Penzo A, Phillips TJ, Piacentino G, Pinera L, Pitts K, Poukhov O, Prakoshyn F, Pronko A, Ptohos F, Pueschel E, Rahaman A, Ranjan N, Redondo I, Rekovic V, Rimondi F, Robson A, Rodrigo T, Rogers E, Rolli S, Roser R, Rossi M, Rossin R, Ruiz A, Russ J, Rusu V, Sakumoto WK, Santi L, Sato K, Savoy-Navarro A, Schlabach P, Schmidt EE, Schmidt MA, Schmitt M, Schwarz T, Scodellaro L, Sedov A, Seidel S, Seiya Y, Semenov A, Sexton-Kennedy L, Sforza F, Sfyrla A, Shalhout SZ, Shiraishi S, Shochet M, Sidoti A, Sisakyan A, Slaughter AJ, Slaunwhite J, Sliwa K, Smith JR, Soha A, Sorin V, Squillacioti P, St Denis R, Stentz D, Strologas J, Strycker GL, Suh JS, Sukhanov A, Suslov I, Takashima R, Tanaka R, Tecchio M, Teng PK, Terashi K, Thom J, Thompson AS, Thompson GA, Ttito-Guzman P, Tokar S, Tollefson K, Torre S, Torretta D, Totaro P, Tourneur S, Trovato M, Tsai SY, Vallecorsa S, van Remortel N, Varganov A, Vataga E, Vazquez F, Velev G, Vellidis C, Veszpremi V, Vidal M, Vidal R, Vila I, Vilar R, Vine T, Vogel M, Volpi G, Wagner RG, Wagner RL, Wakisaka T, Wang SM, Whitehouse B, Wicklund E, Wilbur S, Wittich P, Wolbers S, Wolfe C, Wright T, Wu X, Yamamoto K, Yang UK, Yang YC, Yorita K, Yoshida T, Yu GB, Yu I, Yu SS, Yun J, Zanetti A, Zhang X, Zucchelli S
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Comments and Reply on: "Study of multi-muon events produced in p (p)over-bar interactions at root s=1.96 TeV"; T. Aaltonen et al. (The CDF Collaboration)

EUROPEAN PHYSICAL JOURNAL C 2010 JUL; 68(1-2):119-123
The European Physical Journal C-Particles and Fields-publishes scientific manuscripts of relevance to the scientific community following careful and strict peer reviewing and, whenever appropriate and necessary, through discussion with the authors, so as to optimise scientific content and style of presentation prior to publication. In some cases significant disagreement between authors and referees (and/or editors) of the journal cannot be resolved despite all efforts and best of intentions. While the journal-not with standing any appeals-retains the right to reject such manuscripts, the editors of this journal may decide, in cases deemed of exceptional interest and potential significance for the field, to accept the manuscript for publication, to amend it by "comments" of the editor(s) in charge and, if appropriate, by a "reply" of the authors of the commented manuscript. The present comment is on "Study of multi-muon events produced in p (p) over bar interactions at root s = 1.96 TeV" by T. Aaltonen et al. (the CDF Collaboration, Eur. Phys. J. C, 2010, doi: 10.1140/epjc/s10052-010-1336-0).
Rousset R, Bono-Lauriol S, Gettings M, Suzanne M, Speder P, Noselli S
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The Drosophila serine protease homologue Scarface regulates JNK signalling in a negative-feedback loop during epithelial morphogenesis

DEVELOPMENT 2010 JUL 1; 137(13):2177-2186
In Drosophila melanogaster, dorsal closure is a model of tissue morphogenesis leading to the dorsal migration and sealing of the embryonic ectoderm. The activation of the JNK signal transduction pathway, specifically in the leading edge cells, is essential to this process. In a genome-wide microarray screen, we identified new JNK target genes during dorsal closure. One of them is the gene scarface (scaf), which belongs to the large family of trypsin-like serine proteases. Some proteins of this family, like Scaf, bear an inactive catalytic site, representing a subgroup of serine protease homologues (SPH) whose functions are poorly understood. Here, we show that scaf is a general transcriptional target of the JNK pathway coding for a secreted SPH. scaf loss-of-function induces defects in JNK-controlled morphogenetic events such as embryonic dorsal closure and adult male terminalia rotation. Live imaging of the latter process reveals that, like for dorsal closure, JNK directs the dorsal fusion of two epithelial layers in the pupal genital disc. Genetic data show that scaf loss-of-function mimics JNK over-activity. Moreover, scaf ectopic expression aggravates the effect of the JNK negative regulator puc on male genitalia rotation. We finally demonstrate that scaf acts as an antagonist by negatively regulating JNK activity. Overall, our results identify the SPH-encoding gene scaf as a new transcriptional target of JNK signalling and reveal the first secreted regulator of the JNK pathway acting in a negative-feedback loop during epithelial morphogenesis.
Beronja S, Livshits G, Williams S, Fuchs E
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Rapid functional dissection of genetic networks via tissue-specific transduction and RNAi in mouse embryos

NATURE MEDICINE 2010 JUL; 16(7):821-U128
Using ultrasound-guided in utero infections of fluorescently traceable lentiviruses carrying RNAi or Cre recombinase into mouse embryos, we have demonstrated noninvasive, highly efficient selective transduction of surface epithelium, in which progenitors stably incorporate and propagate the desired genetic alterations. We achieved epidermal-specific infection using small generic promoters of existing lentiviral short hairpin RNA libraries, thus enabling rapid assessment of gene function as well as complex genetic interactions in skin morphogenesis and disease in vivo. We adapted this technology to devise a new quantitative method for ascertaining whether a gene confers a growth advantage or disadvantage in skin tumorigenesis. Using alpha 1-catenin as a model, we uncover new insights into its role as a widely expressed tumor suppressor and reveal physiological interactions between Ctnna1 and the Hras1-Mapk3 and Trp53 gene pathways in regulating skin cell proliferation and apoptosis. Our study illustrates the strategy and its broad applicability for investigations of tissue morphogenesis, lineage specification and cancers.
Strambio-De-Castillia C, Niepel M, Rout MP
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The nuclear pore complex: bridging nuclear transport and gene regulation

NATURE REVIEWS MOLECULAR CELL BIOLOGY 2010 JUL; 11(7):490-501
Although the nuclear pore complex (NPC) is best known for its primary function as the key regulator of molecular traffic between the cytoplasm and the nucleus, a growing body of experimental evidence suggests that this structure participates in a considerably broader range of cellular activities on both sides of the nuclear envelope. Indeed, the NPC is emerging as an important regulator of gene expression through its influence on the internal architectural organization of the nucleus and its apparently extensive involvement in coordinating the seamless delivery of genetic information to the cytoplasmic protein synthesis machinery.
Guttman-Yassky E, Mita A, De Jong M, Matthews L, McCarthy S, Iwata KK, Verweij J, Rowinsky EK, Krueger JG
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Characterisation of the cutaneous pathology in non-small cell lung cancer (NSCLC) patients treated with the EGFR tyrosine kinase inhibitor erlotinib

EUROPEAN JOURNAL OF CANCER 2010 JUL; 46(11):2010-2019
Introduction: EGFR inhibitors (EGFRIs) have been shown to be clinically effective in various cancers. Unique skin toxicity is commonly observed with EGFRIs and a correlation between the clinical benefit of EGFRIs and this characteristic rash has been reported. Erlotinib is a potent EGFRI approved for treatment of non-small cell lung cancer (NSCLC) and pancreatic cancer. Methods: This is the first time in which patients were given increasing doses of an EGFRI to induce a mechanistic rash and study its associated pathology in skin. Biopsies were collected during treatment from both rash-affected and unaffected skin of 23 NSCLC patients and compared with pre-treatment biopsies. Results: Altered differentiation of appendegeal epithelium (hair follicles and sebaceous glands) was remarkable in both affected and unaffected skin, although epidermal growth was not significantly reduced. A predominantly mononuclear leucocyte infiltrate was detected in the interfollicular dermis or around skin appendages. This infiltrate included TRAIL-positive cells with a dendritic cell (DC) morphology, although T-cells, antigen-presenting DCs and macrophages were also evident. This is the first report showing the involvement of a dendritic cell subtype with EGFRI skin toxicity. Conclusions: Altered differentiation of pilosebaceous epithelium is evident in both rash-affected and unaffected skin and constitutes the primary process of EGFRI in human skin. We propose that this eventually triggers inflammation and the EGFRI rash. TRAIL-positive inflammatory cells could link rash development and immune-triggered apoptosis of epithelial cells, including those of underlying carcinomas. (C) 2010 Elsevier Ltd. All rights reserved.