Welcome to Mogrify

A directory of defined factors for direct cell reprogramming. Mogrify uses a network-based algorithm designed to find transcription factors that impart the most influence on changes in cellular state. This website will allow you to explore possible reprogramming experiments, different collections of transcription factors as well as the look at the changes in the regulatory network. Select a cell conversion. Select your starting cell type. Adipose tissue - adult. Skeletal muscle - adult. Small airway ep.

OVERVIEW

The site mogrify.net presently has an average traffic classification of zero (the lower the more users). We have examined zero pages within the web page mogrify.net and found five websites interfacing with mogrify.net. There is two contacts and locations for mogrify.net to help you communicate with them. The site mogrify.net has been online for five hundred and thirty-four weeks, twenty-nine days, sixteen hours, and twelve minutes.
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5
Contacts
2
Addresses
2
Online Since
Apr 2014

MOGRIFY.NET TRAFFIC

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MOGRIFY.NET HISTORY

The site mogrify.net was first submitted to the registrar on April 04, 2014. This website was updated on the date of April 04, 2014. This site will go back on the market on April 04, 2016. As of today, it is five hundred and thirty-four weeks, twenty-nine days, sixteen hours, and twelve minutes young.
REGISTERED
April
2014
UPDATED
April
2014
EXPIRED
April
2016

PERIOD

10
YEARS
2
MONTHS
29
DAYS

LINKS TO DOMAIN

SUPERFAMILY database of structural and functional protein annotations for all completely sequenced organisms

SUPERFAMILY is a database of structural and functional annotation for all proteins and genomes. The SUPERFAMILY annotation is based on a collection of hidden Markov models. Which represent structural protein domains at the SCOP. A superfamily groups together domains which have an evolutionary relationship. The annotation is produced by scanning protein sequences from over 2,478 completely sequenced genomes. Against the hidden Markov models. Submit sequences for SCOP classification.

SUPERFAMILY database of structural and functional protein annotations for all completely sequenced organisms

SUPERFAMILY is a database of structural and functional annotation for all proteins and genomes. The SUPERFAMILY annotation is based on a collection of hidden Markov models. Which represent structural protein domains at the SCOP. A superfamily groups together domains which have an evolutionary relationship. The annotation is produced by scanning protein sequences from over 2,478 completely sequenced genomes. Against the hidden Markov models. Submit sequences for SCOP classification.

WHAT DOES MOGRIFY.NET LOOK LIKE?

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CONTACTS

University of Bristol

Owen Rackham

Merchant Venturers Building

Bristol, Avon, BS8 1UB

GB

Webfusion Limited

Webfusion Limited

5 Roundwood Avenue

Stockley Park, Uxbridge, UB11 1FF

GB

MOGRIFY.NET SERVER

We found that a lone root page on mogrify.net took one thousand four hundred and six milliseconds to load. We could not observe a SSL certificate, so in conclusion I consider this site not secure.
Load time
1.406 secs
SSL
NOT SECURE
Internet Protocol
131.111.85.58

NAME SERVERS

ns.123-reg.co.uk
ns2.123-reg.co.uk

SERVER OS

We discovered that mogrify.net is employing the Apache operating system.

HTML TITLE

Welcome to Mogrify

DESCRIPTION

A directory of defined factors for direct cell reprogramming. Mogrify uses a network-based algorithm designed to find transcription factors that impart the most influence on changes in cellular state. This website will allow you to explore possible reprogramming experiments, different collections of transcription factors as well as the look at the changes in the regulatory network. Select a cell conversion. Select your starting cell type. Adipose tissue - adult. Skeletal muscle - adult. Small airway ep.

PARSED CONTENT

The site has the following in the web site, "A directory of defined factors for direct cell reprogramming." We noticed that the web site also stated " Mogrify uses a network-based algorithm designed to find transcription factors that impart the most influence on changes in cellular state." It also stated " This website will allow you to explore possible reprogramming experiments, different collections of transcription factors as well as the look at the changes in the regulatory network. Select your starting cell type."

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