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NIH initiative project to provide full-length open reading frame (FL-ORF) clones for human, mouse, and rat genes, cow. MGC cDNA clones were obtained by screening of cDNA libraries, by transcript-specific RT-PCR cloning, and by DNA synthesis of cDNA inserts. All MGC sequences are deposited in GenBank and clones can be purchased from distributors of IMAGE consortium. With conclusion of MGC project in March 2009, GenBank records of MGC sequences will be frozen, without further updates. Since definition of what constitutes full-length coding region for some of genes and transcripts for which they have MGC clones will likely change in future, users planning to order MGC clones will need to monitor for these changes. Users can make use of genome browsers and gene-specific databases, such as the UCSC Genome browser, NCBI's Map Viewer, and Entrez Gene, to view relevant regions of genome (browsers) or gene-related information (Entrez Gene).
Proper citation: Mammalian Gene Collection (RRID:SCR_007024) Copy
http://www.ebi.ac.uk/Tools/blast2/index.html
It is used to compare a novel sequence with those contained in nucleotide and protein databases by aligning the novel sequence with previously characterized genes.
Proper citation: Washington University Basic Local Alignment Search Tool (RRID:SCR_008285) Copy
http://www.uwstructuralgenomics.org/
It is a specialized research center supported by the Protein Structure Initiative (PSI) of the National Institute of General Medical Sciences (NIGMS), one of the National Institutes of Health (NIH). PSI is a federal, university, and industry effort aimed at dramatically reducing the costs and lessening the time it takes to determine a three-dimensional protein structure. The long-range goal of PSI is to solve 10,000 protein structures in 10 years and to make the three-dimensional atomic-level structures of most proteins easily obtainable from knowledge of their corresponding DNA sequences. CESG is located within the Department of Biochemistry at the University of Wisconsin-Madison (Madison, WI) and the Department of Biochemistry at the Medical College of Wisconsin (Milwaukee, WI). CESG develops new methods and technologies to address unique eukaryotic bottlenecks and disseminates its methodologies and experimental results to the scientific community worldwide through: :- Cell-Free Protein Production Workshops :- Plasmids at PSI Materials Repository :- Posters Presented at Scientific Meetings :- Publications in PubMed / PubMed Central :- Sesame (LIMS) Available for Researchers :- Solved Structures in the Protein Data Bank :- Technology Dissemination Reports They have welcomed requests by researchers to solve eukaryotic protein structures, particularly medically relevant proteins, through our Online Structure Request System for Researchers. They have solved many community-nominated targets and deposited information about these targets in public databases and published on our investigations and findings. Sponsors: CESG is supported by NIH / NIGMS Protein Structure Initiative grant numbers U54 GM074901 and P50 GM064598.
Proper citation: CESG (RRID:SCR_008451) Copy
Ratings or validation data are available for this resource
Human and mouse genome annotation project which aims to identify all gene features in the human genome using computational analysis, manual annotation, and experimental validation.
Proper citation: GENCODE (RRID:SCR_014966) Copy
https://github.com/TGAC/RAMPART
Software for workflow management system for de novo genome assembly of DNA sequence data.Designed to exploit high performance computing environments, such as clusters and shared memory systems.
Proper citation: Rampart (RRID:SCR_016742) Copy
https://github.com/FeeLab/seqNMF
Software tool for unsupervised discovery of sequential structure. Used to detect sequences in neural data generated by internal behaviors, such as animal thinking or sleeping. Used for unsupervised discovery of temporal sequences in high dimensional datasets in neuroscience without reference to external markers.
Proper citation: seqNMF (RRID:SCR_017068) Copy
http://cab.spbu.ru/software/rnaspades/
Software tool for assembling transcripts from RNA-Seq data. Explores surprising computational parallels between assembly of transcriptomes and single cell genomes. Suitable for all kind of organisms. Part of SPAdes package since version 3.9.
Proper citation: rnaSPAdes (RRID:SCR_016992) Copy
http://www.clustal.org/clustal2/
Software tool for nucleotide sequence alignment. Graphical version of multiple sequence alignment program for DNA and proteins. Windows interface for ClustalW multiple sequence alignment program. Provides integrated environment for performing multiple sequence and profile alignments and analyzing results. Available on Linux, Mac and Windows.
Proper citation: Clustal 2 (RRID:SCR_017055) Copy
http://www.cisreg.ca/cgi-bin/NHR-scan/nhr_scan.cgi
Web interface for computational prediction of nuclear hormone receptor binding sites in genomic sequences. Flexible Hidden Markov Model framework to allow for variable spacing and orientation of half sites. Allows for parameter modifications.
Proper citation: Nuclear Hormone Receptor Scan (RRID:SCR_016975) Copy
https://www.ebi.ac.uk/Tools/psa/emboss_matcher/
Software tool for pairwise sequence alignment. Identifies local similarities in two input sequences. One of EMBL-EBI search and sequence analysis tools.
Proper citation: EMBOSSMatcher (RRID:SCR_017252) Copy
https://github.com/aidenlab/juicer.git
Software platform for analyzing kilobase resolution Hi-C data. Open source tool for analyzing terabase scale Hi-C datasets. Allowes to transform raw sequence data into normalized contact maps.
Proper citation: Juicer (RRID:SCR_017226) Copy
https://github.com/SionBayliss/PIRATE
Software pangenomics toolbox for clustering diverged orthologues in bacteria. Used to identify and classify orthologous gene families in bacterial pangenomes over wide range of sequence similarity thresholds.
Proper citation: PIRATE (RRID:SCR_017265) Copy
https://github.com/hillerlab/GenomeAlignmentTools
Software tool to incorporate newly detected repeat overlapping alignments into pairwise alignment chains. It only aligns local genomic regions that are bounded by colinear aligning blocks, as provided in chains, which makes it feasible to consider all seeds including those that overlap repetitive regions. Used to improve genome alignments by incorporating previously undetected local alignments between repetitive sequences.
Proper citation: RepeatFiller (RRID:SCR_017414) Copy
Software tool for automated removal of spurious sequences or poorly aligned regions from multiple sequence alignment. Software package for automated alignment trimming in large scale phylogenetic analyses.
Proper citation: trimAl (RRID:SCR_017334) Copy
https://github.com/JosephCrispell/homoplasyFinder/wiki
Software tool to identify and annotate homoplasies on phylogeny and sequence alignment. Used to automatically identify any homoplasies present in simulated and real phylogenetic data. Java application that can be used as standalone tool or within statistical programming environment R.
Proper citation: HomoplasyFinder (RRID:SCR_017300) Copy
Software package for advanced Bayesian evolutionary analysis by sampling trees. Used for phylogenetics, population genetics and phylodynamics. Program for Bayesian phylogenetic analysis of molecular sequences. Estimates rooted, time measured phylogenies using strict or relaxed molecular clock models. Framework can be extended by third parties. Comprised of standalone programs including BEAUti, BEAST, MASTER, RBS, SNAPP, MultiTypeTree, BDSKY, LogAnalyser, LogCombiner, TreeAnnotator, DensiTree and package manager.
Proper citation: BEAST2 (RRID:SCR_017307) Copy
https://github.com/ISUgenomics/SequelQC
Software tool that calculates key statistics and generates publication quality plots for raw PacBio Sequel data. Open source software for analyzing PacBio Sequel raw sequence data.
Proper citation: SequelQC (RRID:SCR_017279) Copy
http://topaz.gatech.edu/GeneMark/
Software package for ab initio identification of protein coding regions in RNA transcripts. Algorithm parameters are estimated by unsupervised training which makes unnecessary manually curated preparation of training sets. Sets of assembled eukaryotic transcripts can be analyzed by modified GeneMarkS-T algorithm which part of gene prediction programs GeneMark.
Proper citation: GeneMarkS-T (RRID:SCR_017648) Copy
http://www.epigenomes.ca/data-release/
Network to connect Canadian epigenetics researchers and expand their reach to broader health research community in Canada and beyond. Curated epigenomics sequence focused on common human diseases.
Proper citation: Canadian Epigenetics, Environment and Health Research Consortium Network (RRID:SCR_017491) Copy
http://mordred.bioc.cam.ac.uk/~rapper/rampage.php
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on February 23,2021.Web based structural analysis tool for any uploaded PDB file, producing Ramachandran plots, computing dihedral angles and extracting sequence from PDB. Used to visualize dihedral angles ψ against φ of amino acid residues in protein structure.
Proper citation: RAMPAGE (RRID:SCR_017590) Copy
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