Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.
SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
Data analysis service that allows to process CEL files from Affymetrix, Inc. GeneChip Gene 1.0 ST Arrays to identify alternative splicing.
Proper citation: Gene Array Analyzer (RRID:SCR_008323) Copy
http://swift.cmbi.ru.nl/gv/pdbfinder/
It is a very information rich protein structure database. Unfortunately, the PDB people are not very good at making their data available for search engines. There are several reasons why search engines often fail on the PDB: * The PDB has zillions of small administrative errors * The PDB-format is search-engine unfriendly * Many PDB files are incomplete The PDBFINDER project is a possible solution to these problems. The PDBFINDER holds for each PDB file a structured, search-engine-friendly-formatted entry that holds the data-items most likely needed for people search for certain types of PDB entries. The PDBFINDER is not useful to search in atomic coordinates; it is meant to ad searches in the administrative records of PDB files. Originally, the PDBFINDER was just for searching in PDB files. However, as all the time more people are using the PDBFINDER to aid modelling and database projects, they decided to also produce the so-called PDBFINDER2. The PDBFINDER2 also holds a lot of quality information about the PDB entries. Please only use the PDBFINDER2 if you really need that quality determination aspect because the PDBFINDER2 is five times bigger than the original PDBFINDER.
Proper citation: PDB Finder (RRID:SCR_008284) Copy
http://www.imtech.res.in/raghava/bhairpred/
Bhairpred server is based on machine learning technique SVM using single sequence information, evolutionary profile, predicted and observed secondary structure (as obtained using Psipred and DSSP), predicted and observed accessibility values (as obtainned from Netasa and DSSP). The methods were trained and tested on dataset of 2880 proteins and their performance was evaluated on dataset of 534 proteins used by Thornton (PNAS, 2002). Best prediction results were obtained with hybrid approach that combined prediction results from evolutionary profile, predicted secondary structure and accessibility.
Proper citation: SVM based method for predicting beta hairpin structures in proteins (RRID:SCR_008349) Copy
http://array.mbb.yale.edu/analysis/
A fully integrated platform for processing microarray data.
Proper citation: ExpressYourself (RRID:SCR_008881) Copy
http://lemur.amu.edu.pl/share/php/mirnest/home.php
A database of animal, plant and virus microRNA data maintained at the University of Poznan. The database provides: * 9980 miRNA candiates from 420 animal and plant species predicted in Expressed Sequence Tags * predicted targets for plant candidates * RNA-seq reads mapped to candidates from 29 species * external data from 12 databases that includes sequences, polymorphism, expression and regulation. miRNEST 1.0, it contains miRNA from 563 animals, plants and viruses plant species.
Proper citation: miRNEST (RRID:SCR_008907) Copy
hiPathDB is an integrated pathway database that combines the curated human pathway data of NCI-Nature PID, Reactome, BioCarta and KEGG. In total, it includes 1661 pathways consisting of 8976 distinct physical entities. (2010.03.09) hiPathDB provides two different types of integration. The pathway-level integration, conceptually a simple collection of individual pathways, was achieved by devising an elaborate model that takes distinct features of four databases into account and subsequently reformatting all pathways in accordance with our model. The entity-level integration creates a single unified pathway that encompasses all pathways by merging common components. Even though the detailed molecular-level information such as complex formation or post-translational modifications tends to be lost, such integration makes it possible to investigate signaling network over the entire pathways and allows identification of pathway cross-talks. Another strong merit of hiPathDB is the built-in pathway visualization module that supports explorative studies of complex networks in an interactive fashion. The layout algorithm is optimized for virtually automatic visualization of the pathways.
Proper citation: hiPathDB - human integrated Pathway DB with facile visualization (RRID:SCR_008900) Copy
http://www.medinfopoli.polimi.it/GFINDer/
THIS RESOURCE IS NO LONGER IN SERVICE, documented on August 16, 2019. Multi-database system providing large-scale lists of user-classified sequence identifiers with genome-scale biological information and functional profiles biologically characterizing the different gene classes in the list. GFINDer automatically retrieves updated annotations of several functional categories from different sources, identifies the categories enriched in each class of a user-classified gene list, and calculates statistical significance values for each category. Moreover, GFINDer enables to functionally classify genes according to mined functional categories and to statistically analyze the obtained classifications, aiding in better interpreting microarray experiment results.
Proper citation: GFINDer: Genome Function INtegrated Discoverer (RRID:SCR_008868) Copy
http://cbdb.nimh.nih.gov/microsniper/
A web-based application which predicts the impact of a SNP on putative microRNA targets.
Proper citation: MicroSNiPer (RRID:SCR_009880) Copy
A free, simple to use web service dedicated to reconstructing and analysing phylogenetic relationships between molecular sequences. Phylogeny.fr runs and connects various bioinformatics programs to reconstruct a robust phylogenetic tree from a set of sequences.
Proper citation: Phylogeny.fr (RRID:SCR_010266) Copy
http://centre.bioinformatics.zj.cn/mirtools/
A comprehensive web server developed to allow researchers to comprehensively characterize small RNA transcriptome.
Proper citation: mirTools (RRID:SCR_009701) Copy
A curated knowledge base of the circuitry of the hippocampus of normal adult, or adolescent, rodents at the mesoscopic level of neuronal types. Knowledge concerning dentate gyrus, CA3, CA2, CA1, subiculum, and entorhinal cortex is distilled from published evidence and is continuously updated as new information becomes available. Each reported neuronal property is documented with a pointer to, and excerpt from, relevant published evidence, such as citation quotes or illustrations. Please note: This is an alpha-testing site. The content is still being vetted for accuracy and has not yet undergone peer-review. As such, it may contain inaccuracies and should not (yet) be trusted as a scholarly resource. The content does not yet appear uniformly across all combinations of browsers and screen resolutions.
Proper citation: Hippocampome.org (RRID:SCR_009023) Copy
http://tcoffee.crg.cat/apps/tcoffee/do:regular
A multiple sequence alignment server which can align Protein, DNA and RNA sequences.
Proper citation: T-Coffee (RRID:SCR_011818) Copy
http://diana.imis.athena-innovation.gr/DianaTools/index.php?r=lncBase/index
Database that hosts elaborated information for both predicted and experimentally verified, miRNA-lncRNA interactions. The database consists of two distinct modules. The Experimental Module contains detailed information for more than 5,000 interactions, between 2,958 lncRNAs and 120 miRNAs, ranging from miRNA and lncRNA related facts to information specific to their interaction, the experimental validation methodologies and their outcomes. The Prediction Module, which is based on the latest version of DIANA-microT target prediction algorithm (DIANA-microT-CDS), contains detailed information for more than 10 million interactions, between 56,097 lncRNAs and 3,078 miRNAs, ranging from miRNA and lncRNA related details to specific information regarding their interaction sites, graphical representation of their binding and the predicted score. This module exhibits a unique feature for searching the database. Users are able to add genomic locations to their queries thus browsing every miRNA-lncRNA interaction that has at least one MRE located inside the queried locus.
Proper citation: DIANA-LncBase (RRID:SCR_010840) Copy
Efficient protein multiple sequence alignment program, which has demonstrated a statistically significant improvement in accuracy compared to several leading alignment tools.
Proper citation: ProbCons (RRID:SCR_011813) Copy
http://nhjy.hzau.edu.cn/kech/swxxx/jakj/dianzi/Bioinf6/GeneFinding/GeneFinding2.htm
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on August 10,2020. Data analysis service for Hidden Markov Model (HMM)-based gene structure prediction (multiple genes, both chains).
Proper citation: FGENESH (RRID:SCR_011928) Copy
A collection of web tools designed to assist with the analysis of DNA microarray data and results. RACE performs probe level data preprocessing, quality checks, normalization, and visualization for Affymetrix GeneChips. In addition, it performs clustering and differential analysis of normalized expression levels or ratios for arbitrary platforms, and estimates the false discovery rates in lists of potentially regulated genes. A Gene Ontology (GO)-term analysis assists in the biological interpretation of gene lists. The user can customize each analysis request; upon submission the analysis is executed in a fully automated way., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: RACE (RRID:SCR_010950) Copy
http://www.imtech.res.in/raghava/hslpred/
A support vector machine (SVM)-based method for the prediction of 4 major subcellular localization (cytoplasm, mitochondrial, nuclear and plasma membrane) of human proteins using various features such as i) amino acid composition, ii) dipeptide composition and iii) evolutionary information of proteins.
Proper citation: HSLPred (RRID:SCR_011972) Copy
http://159.149.160.51/pscan_chip_dev/
Web server that, starting from a collection of genomic regions derived from a ChIP-Seq experiment, scans them using motif descriptors like JASPAR or TRANSFAC position-specific frequency matrices, or descriptors uploaded by users, and it evaluates both motif enrichment and positional bias within the regions according to different measures and criteria.
Proper citation: Pscan-ChIP (RRID:SCR_010885) Copy
A tool to predict changes in protein stability upon point mutations.
Proper citation: CUPSAT (RRID:SCR_010773) Copy
http://ls-snp.icm.jhu.edu/ls-snp-pdb/
A web tool for genome-wide annotation of human SNPs.
Proper citation: LS-SNP/PDB (RRID:SCR_010774) Copy
Can't find your Tool?
We recommend that you click next to the search bar to check some helpful tips on searches and refine your search firstly. Alternatively, please register your tool with the SciCrunch Registry by adding a little information to a web form, logging in will enable users to create a provisional RRID, but it not required to submit.
Welcome to the RRID Resources search. From here you can search through a compilation of resources used by RRID and see how data is organized within our community.
You are currently on the Community Resources tab looking through categories and sources that RRID has compiled. You can navigate through those categories from here or change to a different tab to execute your search through. Each tab gives a different perspective on data.
If you have an account on RRID then you can log in from here to get additional features in RRID such as Collections, Saved Searches, and managing Resources.
Here is the search term that is being executed, you can type in anything you want to search for. Some tips to help searching:
You can save any searches you perform for quick access to later from here.
We recognized your search term and included synonyms and inferred terms along side your term to help get the data you are looking for.
If you are logged into RRID you can add data records to your collections to create custom spreadsheets across multiple sources of data.
Here are the sources that were queried against in your search that you can investigate further.
Here are the categories present within RRID that you can filter your data on
Here are the subcategories present within this category that you can filter your data on
If you have any further questions please check out our FAQs Page to ask questions and see our tutorials. Click this button to view this tutorial again.