yeastgenome.org Report : Visit Site


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    The main IP address: 54.149.216.140,Your server United States,Portland ISP:Amazon Technologies Inc.  TLD:org CountryCode:US

    The description :the saccharomyces genome database (sgd) provides comprehensive integrated biological information for the budding yeast saccharomyces cerevisiae....

    This report updates in 26-Sep-2018

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Latitude: 45.523448944092
Longitude: -122.67620849609
Country: United States (US)
City: Portland
Region: Oregon
ISP: Amazon Technologies Inc.

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Date:Wed, 26 Sep 2018 03:48:17 GMT
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it looks like you are using an unsupported version of internet explorer. because microsoft no longer longer supports any version other than 11 , we have decided to do the same. we recommend downloading firefox or chrome. you can download firefox here , or chrome here . about blog download help yeastmine email us twitter facebook linkedin youtube saccharomyces genome database saccharomyces genome database saccharomyces genome database menu analyze gene lists blast fungal blast go term finder go slim mapper pattern matching design primers restriction mapper sequence download genome browser blast fungal blast gene/sequence resources reference genome download genome genome snapshot chromosome history systematic sequencing table original sequence papers strains and species variant viewer align strain sequences synteny viewer homology fungal alignment pdb search resources uniprotkb interpro (ebi) homologene (ncbi) ygob (trinity college) function gene ontology go term finder go slim mapper go slim mapping file expression biochemical pathways phenotypes browse all phenotypes interactions yeastgfp resources go consortium biogrid (u. toronto) literature full-text search new yeast papers yeastbook genome-wide analysis papers resources pubmed (ncbi) pubmed central (ncbi) google scholar community colleague information find a colleague add or update info find a yeast lab career resources meetings future yeast genetics nomenclature submit a gene registration gene registry nomenclature conventions global gene hunter methods and reagents strains and constructs reagents protocols and methods historical data physical & genetic maps genetic maps orfmap chromosomes sequence gene summary paragraphs wiki submit data resources info & downloads about blog downloads site map help hsf1p-target genes (green) coalesce into foci after heat shock (nuclear pore complex, red). image courtesy of s. chowdhary and a. kainth, gross lab, lsu health sciences center. rap1-gfp and calcofluor white staining of stationary phase cells. image courtesy of m. guidi, m. ruault and a. taddei, institut curie (paris). pma1-mcherry and vma1-gfp localization in mitotic cells. image courtesy of m. eastwood, fred hutch and m. meneghini, university of toronto. cccp-induced decrease of mitochondrial membrane potential (below) or control treatment (above) as measured by mitoloc. image courtesy of dr. jakob vowinckel, ralser lab, university of cambridge. redistribution of msn5 pools from the nucleus to the cytoplasm upon glucose deprivation. image courtesy of h. huang and a. hopper, ohio state university. floccule of yeast rho0 cells expressing pts1-gfp as a peroxisomal marker, stained with calcofluor white. image courtesy of dr. jakob vowinckel, university of cambridge s. cerevisiae membrane proteins visualized by rfp and gfp. image courtesy of masur. wikimedia commons. peroxisome (red) and mitochondrial (green) fission defects in vps1 fis1 double deletion strain transformed with fis1. image courtesy of s. lefevre, s. kumar and i. van der klei, university of groningen. yeast cells expressing trk1/gfp. image courtesy of v. zayats and j. ludwig, center of nanobiology and structural biology, av cr. the distribution of mtdna (green) within the mitochondrial network (red). image courtesy of christof osman and peter walter, university of california, san francisco the distribution of er exit sites (eres, green) within the er (red). image courtesy of a. nakano and k. kurokawa, riken. cell, actin and nuclear morphology of yeast cells treated with dmso (left) and poacic acid (right). images courtesy of hiroki okada and yoshikazu ohya, university of tokyo. localization of active ras in a wild type strain image courtesy of s. colombo and e. martegani, university milano bicocca sectored colonies showing loss of silencing at the hml locus image courtesy of anne dodson, uc berkeley pma1p imaged using the rite tagging system in mother (green) and daughter cells (red) image courtesy of dan gottschling ph.d., fred hutchinson cancer research center lipid droplets in fld1 mutant images by cars image courtesy of heimo wolinski, ph.d. and sepp d. kohlwein, ph.d., university of graz, austria fpr3p accumulation in the nucleolus of s. cerevisiae image courtesy of amy macqueen, ph.d., wesleyan university anti-fpr3 antibody courtesy of jeremy thorner, ph.d., uc berkeley san1 strain visualized with fun and calcofluor white image courtesy of the bruschi lab, icgeb, trieste, italy single mdn1 mrnas detected by fish image courtesy of the zenklusen lab, université de montréal localization of ace2-gfp to daughter cell nuclei image courtesy of eric weiss, ph.d. northwestern university about sgd the saccharomyces genome database (sgd) provides comprehensive integrated biological information for the budding yeast saccharomyces cerevisiae along with search and analysis tools to explore these data, enabling the discovery of functional relationships between sequence and gene products in fungi and higher organisms. try this? meetings international specialized symposium on yeasts, "yeast odyssey: from nature to industry" october 01 to october 04, 2018 - bariloche, patagonia, argentina 7th international yeast 2.0 and synthetic genomes conference november 26 to november 28, 2018 - sydney, nsw, australia 30th fungal genetics conference march 12 to march 17, 2019 - asilomar conference grounds, pacific grove, ca new & noteworthy resistance is not futile: how yeasts avoid getting ill from iils - september 24, 2018 resistance to poisoning is a good thing in the cartoon world, where both good and bad guys and gals often have superpowers that render them resistant to all sorts of toxins and poisons. but does that happen in the “real” world that we live in? well, some people would say that keith richards and cockroaches […] read more chaperone wars: the last co-chaperone - august 22, 2018 in star wars: the force awakens, the evil first order rises up and threatens to eliminate the new republic. the protagonists, who join forces of the resistance, must find the reclusive jedi master luke skywalker so that he can take up arms against the first order and save the galaxy. (warning: star wars spoilers below!) […] read more (almost) all hands on deck for calcineurin - july 31, 2018 if there was a world cup soccer championship for cellular proteins, it’s a pretty sure bet that calcineurin wouldn’t make the team. that’s because this protein is one of those players that just can’t help but use their hands! and as pretty much everyone knows, that’s a big no-no for soccer players (except goalies, of […] read more new and improved gene/sequence resources - july 12, 2018 gene/sequence resources (gsr) is a great way to figure out which tools at sgd can help you analyze the yeast genome. given a gene name, chromosomal region, or raw dna/protein sequence, gsr retrieves a list of sequence analysis tools, options for accessing biological information, and table/map displays. we’ve recently updated gsr to expand its search […] read more too much of a good thing can be hazardous to your health - july 02, 2018 when someone says they can “read you like a book”, they probably aren’t saying that they know your entire genome sequence. (…or for you westworld fans, you certainly hope they aren’t saying they’ve got access to the delos incorporated “library”!). but in fact everyone’s genome can be thought of as a book, sort of like […] read more more articles @yeastgenome sgd about blog help terms of use privacy policy email us twitter facebook linkedin youtube © stanford university, stanford, ca 94305. ')

URL analysis for yeastgenome.org


https://www.yeastgenome.org/cgi-bin/fungi/alignment.pl
https://www.yeastgenome.org/cgi-bin/go/goslimmapper.pl
https://www.yeastgenome.org/blog/resistance-is-not-futile-how-yeasts-avoid-getting-ill-from-iils
https://www.yeastgenome.org/reference/recent
https://www.yeastgenome.org/reserved_name/new
https://www.yeastgenome.org/ontology/phenotype/ypo
https://www.yeastgenome.org/nph-patmatch
https://www.yeastgenome.org/site-map
https://www.yeastgenome.org/cgi-bin/suggestion
https://www.yeastgenome.org/downloads
https://www.yeastgenome.org/blog/too-much-of-a-good-thing-can-be-hazardous-to-your-health
https://www.yeastgenome.org/colleague_update
https://www.yeastgenome.org/blog/chaperone-wars-the-last-co-chaperone
https://www.yeastgenome.org/seqtools
https://www.yeastgenome.org/blog/almost-all-hands-on-deck-for-calcineurin
ebi.ac.uk

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WHOIS LIMIT EXCEEDED - SEE WWW.PIR.ORG/WHOIS FOR DETAILS

  REFERRER http://www.pir.org/

  REGISTRAR Public Interest Registry

SERVERS

  SERVER org.whois-servers.net

  ARGS yeastgenome.org

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DOMAIN

  NAME yeastgenome.org

NSERVER

  NS-1215.AWSDNS-23.ORG 205.251.196.191

  NS-1598.AWSDNS-07.CO.UK 205.251.198.62

  NS-164.AWSDNS-20.COM 205.251.192.164

  NS-806.AWSDNS-36.NET 205.251.195.38

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