Search
Leader | 00000nz a2200037n 45 0 | ||
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001 | WKP|Q115630539 (VIAF cluster) (Authority/Source Record) | ||
003 | WKP | ||
005 | 20241120235839.0 | ||
008 | 241120nneanz||abbn n and d | ||
035 | ‡a (WKP)Q115630539 | ||
035 | ‡a (OCoLC)Q115630539 | ||
100 | 0 | ‡a Eric Bernard ‡c researcher ‡9 en | |
670 | ‡a Author's Electrostatic repulsion between HIV-1 capsid proteins modulates hexamer plasticity and in vitro assembly | ||
670 | ‡a Author's Electrostatic repulsion regulates hiv-1 capsid hexamer plasticity and assembling capacities into core-like structures | ||
670 | ‡a Author's Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments | ||
670 | ‡a Author's Fatty acid synthase and stearoyl-CoA desaturase-1 are conserved druggable cofactors of Old World Alphavirus genome replication | ||
670 | ‡a Author's Human keratinocytes restrict chikungunya virus replication at a post-fusion step | ||
670 | ‡a Author's Imipramine Inhibits Chikungunya Virus Replication in Human Skin Fibroblasts through Interference with Intracellular Cholesterol Trafficking | ||
670 | ‡a Author's Induction of a peptide with activity against a broad spectrum of pathogens in the Aedes aegypti salivary gland, following Infection with Dengue Virus | ||
670 | ‡a Author's Insect cell endocytosis of chikungunya virus adapted to Aedes albopictus, a mosquito recently introduced into southern France. | ||
670 | ‡a Author's Isolation of infectious chikungunya virus and dengue virus using anionic polymer-coated magnetic beads | ||
670 | ‡a Author's Palmitoylated cysteines in Chikungunya virus nsP1 are critical for targeting to cholesterol-rich plasma membrane microdomains with functional consequences for viral genome replication | ||
670 | ‡a Author's Peptides derived from evolutionarily conserved domains in Beclin1 and Beclin2 enhance the entry of lentiviral vectors into human cells | ||
670 | ‡a Author's pH-dependent entry of chikungunya virus into Aedes albopictus cells | ||
670 | ‡a Author's The host DHX9 DExH Box helicase is recruited to Chikungunya virus replication complexes for optimal genomic RNA translation | ||
670 | ‡a Author's Uracil DNA Glycosylase 2 negatively regulates HIV-1 LTR transcription. | ||
670 | ‡a Author's Vpr expression abolishes the capacity of HIV-1 infected cells to repair uracilated DNA. | ||
670 | ‡a Author's VSV-G pseudotyping rescues HIV-1 CA mutations that impair core assembly or stability. | ||
919 | ‡a inductionofapeptidewithactivityagainstabroadspectrumofpathogensintheaedesaegyptisalivaryglandfollowinginfectionwithdenguevirus ‡A Induction of a peptide with activity against a broad spectrum of pathogens in the Aedes aegypti salivary gland, following Infection with Dengue Virus ‡9 1 | ||
919 | ‡a insectcellendocytosisofchikungunyavirusadaptedtoaedesalbopictusamosquitorecentlyintroducedintosouthernfrance ‡A Insect cell endocytosis of chikungunya virus adapted to Aedes albopictus, a mosquito recently introduced into southern France. ‡9 1 | ||
919 | ‡a isolationofinfectiouschikungunyavirusanddenguevirususinganionicpolymercoatedmagneticbeads ‡A Isolation of infectious chikungunya virus and dengue virus using anionic polymer-coated magnetic beads ‡9 1 | ||
919 | ‡a palmitoylatedcysteinesinchikungunyavirusnsp1arecriticalfortargetingtocholesterolrichplasmamembranemicrodomainswithfunctionalconsequencesforviralgenomereplication ‡A Palmitoylated cysteines in Chikungunya virus nsP1 are critical for targeting to cholesterol-rich plasma membrane microdomains with functional consequences for viral genome replication ‡9 1 | ||
919 | ‡a peptidesderivedfromevolutionarilyconserveddomainsinbeclin1andbeclin2enhancetheentryoflentiviralvectorsintohumancells ‡A Peptides derived from evolutionarily conserved domains in Beclin1 and Beclin2 enhance the entry of lentiviral vectors into human cells ‡9 1 | ||
919 | ‡a phdependententryofchikungunyavirusintoaedesalbopictuscells ‡A pH-dependent entry of chikungunya virus into Aedes albopictus cells ‡9 1 | ||
919 | ‡a hostdhx9dexhboxhelicaseisrecruitedtochikungunyavirusreplicationcomplexesforoptimalgenomicrnatranslation ‡A The host DHX9 DExH Box helicase is recruited to Chikungunya virus replication complexes for optimal genomic RNA translation ‡9 1 | ||
919 | ‡a uracildnaglycosylase2negativelyregulateshiv1ltrtranscription ‡A Uracil DNA Glycosylase 2 negatively regulates HIV-1 LTR transcription. ‡9 1 | ||
919 | ‡a vprexpressionabolishesthecapacityofhiv1infectedcellstorepairuracilateddna ‡A Vpr expression abolishes the capacity of HIV-1 infected cells to repair uracilated DNA. ‡9 1 | ||
919 | ‡a vsvgpseudotypingrescueshiv1camutationsthatimpaircoreassemblyorstability ‡A VSV-G pseudotyping rescues HIV-1 CA mutations that impair core assembly or stability. ‡9 1 | ||
919 | ‡a fattyacidsynthaseandstearoylcoadesaturase1areconserveddruggablecofactorsofoldworldalphavirusgenomereplication ‡A Fatty acid synthase and stearoyl-CoA desaturase-1 are conserved druggable cofactors of Old World Alphavirus genome replication ‡9 1 | ||
919 | ‡a endocytosisofchikungunyavirusintomammaliancellsroleofclathrinandearlyendosomalcompartments ‡A Endocytosis of chikungunya virus into mammalian cells: role of clathrin and early endosomal compartments ‡9 1 | ||
919 | ‡a electrostaticrepulsionregulateshiv1capsidhexamerplasticityandassemblingcapacitiesintocorelikestructures ‡A Electrostatic repulsion regulates hiv-1 capsid hexamer plasticity and assembling capacities into core-like structures ‡9 1 | ||
919 | ‡a electrostaticrepulsionbetweenhiv1capsidproteinsmodulateshexamerplasticityandinvitroassembly ‡A Electrostatic repulsion between HIV-1 capsid proteins modulates hexamer plasticity and in vitro assembly ‡9 1 | ||
919 | ‡a humankeratinocytesrestrictchikungunyavirusreplicationatapostfusionstep ‡A Human keratinocytes restrict chikungunya virus replication at a post-fusion step ‡9 1 | ||
919 | ‡a imipramineinhibitschikungunyavirusreplicationinhumanskinfibroblaststhroughinterferencewithintracellularcholesteroltrafficking ‡A Imipramine Inhibits Chikungunya Virus Replication in Human Skin Fibroblasts through Interference with Intracellular Cholesterol Trafficking ‡9 1 | ||
996 | ‡2 DNB|118127317X | ||
996 | ‡2 CAOONL|ncf11583562 | ||
996 | ‡2 ISNI|0000000038632493 | ||
996 | ‡2 PTBNP|81471 | ||
996 | ‡2 SUDOC|204687098 | ||
996 | ‡2 RERO|A002996216 | ||
996 | ‡2 PLWABN|9810545401305606 | ||
996 | ‡2 JPG|500165662 | ||
996 | ‡2 DNB|13535532X | ||
996 | ‡2 ISNI|0000000095797155 | ||
996 | ‡2 SUDOC|233805397 | ||
996 | ‡2 BNF|14837016 | ||
996 | ‡2 SUDOC|184417201 | ||
996 | ‡2 BNF|16744709 | ||
996 | ‡2 BNF|16237552 | ||
996 | ‡2 SUDOC|026721961 | ||
996 | ‡2 SUDOC|165949236 | ||
996 | ‡2 BIBSYS|5010031 | ||
996 | ‡2 LC|no2021125198 | ||
996 | ‡2 SUDOC|139595708 | ||
996 | ‡2 BNF|16715261 | ||
996 | ‡2 RERO|A002996439 | ||
996 | ‡2 DNB|1120715113 | ||
996 | ‡2 LC|no2011050381 | ||
996 | ‡2 ISNI|0000000431383868 | ||
996 | ‡2 SUDOC|188662286 | ||
996 | ‡2 SUDOC|103307427 | ||
996 | ‡2 NUKAT|n 2022001009 | ||
996 | ‡2 SUDOC|244231672 | ||
996 | ‡2 BNCHL|10000000000000000030006 | ||
996 | ‡2 BNF|15508501 | ||
996 | ‡2 BAV|495_153319 | ||
996 | ‡2 JPG|500278404 | ||
996 | ‡2 RERO|A002996232 | ||
996 | ‡2 PLWABN|9810638962505606 | ||
996 | ‡2 SUDOC|19520204X | ||
996 | ‡2 LC|n 2011043479 | ||
996 | ‡2 SUDOC|27357468X | ||
996 | ‡2 RERO|A012606629 | ||
996 | ‡2 BNF|16176881 | ||
996 | ‡2 LC|no2001093856 | ||
996 | ‡2 LC|n 2023040301 | ||
996 | ‡2 LC|no2020116483 | ||
996 | ‡2 SUDOC|15326909X | ||
996 | ‡2 BNF|14653906 | ||
996 | ‡2 SUDOC|238697541 | ||
996 | ‡2 SUDOC|10360331X | ||
996 | ‡2 SUDOC|067197272 | ||
996 | ‡2 NUKAT|n 2010090202 | ||
996 | ‡2 BNE|XX6082257 | ||
996 | ‡2 NTA|42298261X | ||
996 | ‡2 LC|no2005057199 | ||
996 | ‡2 SUDOC|178179124 | ||
996 | ‡2 ISNI|0000000439711002 | ||
996 | ‡2 DNB|1081458461 | ||
996 | ‡2 RERO|A018985030 | ||
996 | ‡2 ISNI|0000000031917330 | ||
996 | ‡2 ISNI|0000000117451682 | ||
996 | ‡2 BNE|XX4741886 | ||
996 | ‡2 SUDOC|166776815 | ||
996 | ‡2 J9U|987007358490805171 | ||
996 | ‡2 DNB|1327338904 | ||
996 | ‡2 BNF|14977428 | ||
996 | ‡2 DBC|87097938527274 | ||
996 | ‡2 SUDOC|198546750 | ||
996 | ‡2 BNF|11891501 | ||
996 | ‡2 CAOONL|ncf10369429 | ||
996 | ‡2 JPG|500105244 | ||
996 | ‡2 LC|nb 98038535 | ||
996 | ‡2 DNB|1073412903 | ||
996 | ‡2 NKC|mzk20231172830 | ||
996 | ‡2 SUDOC|191817465 | ||
996 | ‡2 SUDOC|17014299X | ||
996 | ‡2 J9U|987009347724705171 | ||
996 | ‡2 NTA|07520570X | ||
996 | ‡2 ISNI|0000000477045864 | ||
996 | ‡2 SUDOC|231847483 | ||
996 | ‡2 SUDOC|200370782 | ||
996 | ‡2 NTA|136160883 | ||
996 | ‡2 NKC|xx0042804 | ||
996 | ‡2 SUDOC|165252022 | ||
996 | ‡2 NUKAT|n 2009150312 | ||
996 | ‡2 SUDOC|268211957 | ||
996 | ‡2 SUDOC|189994967 | ||
996 | ‡2 RERO|A018164438 | ||
996 | ‡2 SUDOC|147291372 | ||
996 | ‡2 BNF|15377165 | ||
996 | ‡2 SUDOC|241170621 | ||
996 | ‡2 SUDOC|111994772 | ||
997 | ‡a 0 0 lived 0 0 ‡9 1 |