Showing posts with label Proteomic Software. Show all posts
Showing posts with label Proteomic Software. Show all posts

Spectrum Mill - Spectroscopy software

Faster, more accurate protein identification

Large-scale proteome characterization frequently leads to bottlenecks in data interpretation and review. Spectrum Mill for MassHunter Workstation quickly identifies proteins and peptides via fast database searches, with automatic or manual match validation and unique algorithms that minimize false positives. It also offers de novo spectral interpretation for proteins not found in any database. Spectrum Mill software can identify relative abundance differences of twofold or greater without complicated isotope labeling. And Spectrum Mill summarizes and correlates results in ways that provide maximum insight and convenience.

Features:
  • Version A.03.03 now released
  • Spectral extraction and quality assessment speeds protein identification
  • Database searching provides multiple options for protein identification add flexibility
  • Automatic and manual results validation
  • De novo spectral interpretation for proteins not found in any database
  • Quantitative and qualitative information
  • Result summaries and review to make complex data accessible
  • Compatible with multiple data formats from a variety of mass spectrometers 
Software Link: Spectrum Mill - Spectroscopy software
Read more

Agilent MassHunter BioConfirm software

Easily confirm protein and peptide identities

Agilent MassHunter BioConfirm software is ideally suited for scientists who need to support recombinant protein expression and process development, known-protein characterization, or synthetic peptide confirmation. BioConfirm software will help you confirm identities and identify variants before you start expensive testing.

Features:
  • Interactive software allows analysis of both protein and peptide spectra using separate, optimized deconvolution algorithms
  • Protein sequence editor/matcher enables creation of new protein, protein digest, or synthetic peptide sequences and comparison of theoretical masses with mass spectral data
  • Superior feature extraction with a unique algorithm that finds all components-not just all peaks-in each sample
  • Automated batch processing and reporting on the fly
  • Import mass lists from the bioconfirmation software into a database search program, such as Agilent's Spectrum Mill for MassHunter Workstation for fast identification 
Software Link: Agilent MassHunter BioConfirm software
Read more

PEAKS - Proteomic Mass Spectrometry Software

PEAKS is proteomic mass spectrometry software, designed for the researcher interested in highly confident results. Whether studying an unsequenced organism, sequencing synthetic peptides or analyzing known sequences, PEAKS will return optimal results.

Start with the raw (unprocessed) data straight from the mass spectrometer, use various workflows to streamline tasks at hand, and report results in a clear user interface. PEAKS will give greater coverage and confidence in one shot than many other tools combined. Even a novice can obtain publishable results within minutes.

Proteomic Tools

  • de novo Sequencing: Sequence peptides without a database (automated and manual-assisted)
  • PEAKS DB: Protein Identification with maximum accuracy and sensitivity
  • inChorus: Validate your results with multiple search engines
  • PTM Finder: Map PTMs efficiently
  • SPIDER: Homology Search specialized for de novo sequencing
  • PEAKS Q: Quantify your tandem mass spectrometer results

More Than Just Database Search!

Running a database search alone can be effective but often will give false positives or incorrect identifications.1 Since 2002, PEAKS has been the industry standard for de novo sequencing by leading mass spectrometry labs around the world. But there is more to PEAKS than just database search and de novo sequencing. The following pages will discuss a variety of tools that should be a part of daily practices.

Provide your lab with a complete solution for proteomic mass spectrometry investigation; provide it with PEAKS. Protein identification via database searching and de novo sequencing produces stable results worthy of discovery and publication foundations.

What Are Your Needs?

PEAKS is available as both desktop and server solutions. PEAKS Studio is the optimal desktop model and PEAKS Online is the vast server/cluster model. Once you have read about the multiple tools provided with PEAKS within this General Information section, choose the solution that best meets your lab's needs and start testing. Not only is there access to request a downloadable free trial of PEAKS Studio, the BSI website hosts a public server for PEAKS Online where users can submit their own data, free, on a daily basis.

Get Published!

PEAKS makes getting published easier than ever before. Summary reports are automatically produced giving viewers a detailed glimpse of the project's results. Detailed images are easily exported and are configurable to fit exactly into the spaces you want. You no longer need to spend time adjusting blurred or distorted images to suit a specific location. We take pride in our software so you can take pride in your research.

Software Link : PEAKS - Proteomic Mass Spectrometry Software
Read more

GPMAWTM - Protein Mass Analysis Software

GPMAWTM General Protein Mass Analysis for Windows
Mass spectrometric analysis of proteins and peptides and more.

The GPMAW program is primarily intended as a tool for mass spectrometric analysis of proteins and peptides. However, a number of other bioinformatics tools have been included, so the use of the program extends far beyond simple mass analysis.

The program runs on all 32-bit versions of Windows since Windows 2000 (i.e. 2000, XP, Vista, Win7). It will also run on current 64-bit versions, but has not been thoroughly tested on these platforms. It can also run on Mac systems with a Windows emulator, but full compatibility is not guaranteed.

Except for the MS/MS Search, the program does not need a strong processor or fast hard disk but can run on any system. Running the MS/MS Search you need a screen with SVGA+ resolution, otherwise you may even run it on a netbook.


GPMAW™ General Protein Mass Analysis Program content

Sequence handling
Import of sequences from a number of different formats with direct database search in Entrez and in local databases (FastA format and Swiss-Prot). Sequences can be saved in local files (databases) for future reference.

From the sequence window a large number of actions can be performed. Sequences can be exported in FastA format (either singly or all sequences at once) for easy transfer to other programs.

Mass analysis
The protein can be cleaved by automatic methods (e.g. a flexible nomenclature for defining enzyme actions) or manually. The peptides are displayed with a number of parameters (various mass values - mono, ave, charges - Bull&Breese index, HPLC index, pI, charge) and can be further worked upon (e.g. cross-linked, new cleavage).

Peptide mass searches can be performed on any local database in FastA format.

Bioinformatics
A number of graphs can be displayed, hydrophobicity, dot-plot, secondary structure prediction. BLAST searches can be performed on local databases.


GPMAW™ General Protein Mass Analysis Program Features

Sequence window
The sequence window is the default view of a sequence. From here you can call most of other sequence related functions (either through the menu, the toolbar, or the pop-up menu).

The display can be configured in various ways, 1- or 3-letter display, average mass/monoisotopic mass, fixed residue width, sidebar with sequence information, show disulfide bridges etc. By highlighting part of the sequence you can easily obtain the mass of the given section. For easy navigation you can color specific residues (three different colors and underlining are available).

Most of the settings can easily be pre-set.

The sequence window is the parent window from which a large number of derived daughter windows can be created:

Peptide window
Ms/ms window
Mass search, composition search
Available graphs
Hydrophobicity
Secondary structure
Charge vs. pH
Dot-plot
Alpha-helical wheel
Peptide window
The peptide window is normally called from the sequence window through the automatic digest commend. However, there are alternative methods like manual or semi-automatic cleavage.

The peptide window lists all the peptides that will be generated from the given protein along with a large number of physical-chemical parameters (charge single/multiple/negative, peptide number, location, HPLC index, theoretical pI, Bull & Breese index, sequence - 1/3-letter etc.).

Peptides can be generated with partial cleavages, modified termini, modified residues (even partial modifications are supported in a limited way). Specific residues may be colored for easier referencing.

The actual parameters presented can be configured by the user.

Sorting and reverse sorting can take place on any column by clicking on the header.

Through the toolbar and/or the pop-up menu (right mouse click) you can access a large number of additional functions related either to the digest (like the simulated HPLC reversed phase chromatogram) or to the currently selected peptide (ms/ms cleavage, peptide information, charge vs. pH graph).

User Defined pI Values
How are these pKa values then used by GPMAW? For the modifications, it is quite simple, as the pKa values are taken into the calculations of pI and charge whenever they are defined in a sequence (i.e. whenever a residue is modified with the relevant modification).

However, for the mass file GPMAW has a user-defined table, as GPMAW has four different tables.

The first and third are values taken from the literature (references in the on-line help and the manual). The second option is based on the values for free amino acid residues. The fourth and last option is based on the definitions in the currently selected mass file and has to be checked in order to use these values.

Software Link : GPMAWTM General Protein Mass Analysis Software
Read more

GeneSpring GX - Omics Software

Agilent's GeneSpring GX software provides powerful, accessible statistical tools for fast visualization and analysis of transcriptomics, genomics, proteomics and metabolomics data. Designed specifically for the needs of biologists, GeneSpring GX offers an interactive desktop computing environment that promotes investigation and enables understanding of microarray data within a biological context.

Details

Agilent's GeneSpring GX software provides powerful, accessible statistical tools for fast visualization and analysis of transcriptomics, genomics, proteomics and metabolomics data. Designed specifically for the needs of biologists, GeneSpring GX offers an interactive desktop computing environment that promotes investigation and enables understanding of microarray data within a biological context.

New integration with Agilent's Mass Profiler Professional (MPP) software for mass-spectrometry based proteomics and metabolomics data
New application for Agilent's SureSprint G3 Exon Microarray platform for gene and exon-level analysis
New support for Windows 7 32 and 64 bit operating systems
New visualizations and analytical functions
New backup and restore capabilities
Analyze transcriptomics data to detect alternative splicing events, identify differentially expressed genes and microRNAs 
 
Read more

PrimeX - Protein structure prediction Software

PrimeX uses the OPLS-AA force field along with state-of-the-art technologies to refine protein crystal structures for computational drug discovery

Details
The prevailing geometric restraints employed in protein crystallography apply experimental bond length and angle terms as well as other restraint terms that have been subsequently added. However, some potential issues arise when refined structures are used in downstream computational modeling.

Two key characteristics of protein crystal structures that could affect the accuracy of subsequent structure-based modeling are:
  • High-energy contacts interfere with computational chemistry calculations, and are often removed by the application of restrained energy minimization to the crystal structure; the danger with this procedure is the introduction of changes in the structure not supported by the X-ray data.
  • Most protein crystal structures at typical resolutions do not include hydrogens in the model, which must be added after the end of refinement for many molecular mechanics calculations.

Traditionally, attempts to remediate the aforementioned issues are done after refinement, which shifts the control of structural results away from the scientists who are most familiar with the interpretation of diffraction experiments. PrimeX directly addresses these concerns by restraining protein geometry to OPLS-AA (one of the most accurate and widely-deployed force fields for studying protein/ligand systems) during X-ray refinement, and by adding hydrogens during refinement and fully accounting for their existence in all energy computations.

Furthermore, just as the inclusion of hydrogen atoms provides important information for structure validation of refinement results, PrimeX also features improved accounting of non-bonded interactions during refinement, which are central to understanding ligand binding. Thus, PrimeX provides a complete environment that facilitates refinement and produces accurate structures suitable for further computational modeling.

Software Link: PrimeX - Protein structure prediction Software
Read more

Protein Preparation Wizard - Protein structure prediction Software

An easy-to-use tool for correcting common structural problems and creating reliable, all-atom protein models. Protein Preparation Wizard is a robust solution for ensuring a reasonable starting point at the outset of structure-based drug design projects, making it an attractive tool of choice for any chemist whose work relies upon accurate protein models.

Details

Successful structure-based modeling projects demand not only accurate software, but accurate starting structures as well. Left untreated, common problems with experimentally-derived structures can lead to wasted time and resources. Schrodinger's Protein Preparation Wizard is designed to help researchers ensure structural correctness at the outset of a project, equipping them with a high-confidence structure ideal for use with a wide variety of modeling applications.

Experienced modelers know that accurate starting structures are a prerequisite for successful computational drug design. Unfortunately, even when working with a high-resolution x-ray crystallographic structure, researchers can spend considerable time and effort correcting common problems such as missing hydrogen atoms, incomplete side chains and loops, ambiguous protonation states, and flipped residues.

The Protein Preparation Wizard aggregates, automates, and integrates the most frequently used tools and techniques in structure preparation, without shoehorning the researcher into a single inflexible process. Throughout the preparation workflow, a user can choose whether or not to apply any given operation, and because intermediate structures are all organized in the project table, it becomes trivial to share any result with a colleague or use outside applications when a specialized approach may be called for.

More than just a handful of utilities for minor structural corrections, the Protein Preparation Wizard is a robust solution for ensuring a reasonable starting point at the outset of structure-based drug design projects, making it an attractive tool of choice for any chemist whose work relies upon accurate protein models.

Software Link : Protein Preparation Wizard - Protein structure prediction Software
Read more

geneXplain - Molecular biology Research Software

The geneXplain platform is an online toolbox and workflow management system for scientists in the field of molecular biology. Here, you can store and analyze your experimental data - including transcriptomics, proteomics, and ChIP-seq -, search for master regulator molecules, perform gene set enrichment analysis, and even add your own workflows and scripts.
Details
Key features of the platform:
• Collection, storage and analysis of experimental data
• Loading raw microarray data, BED files and more
• Statistical processing of raw data
• Comfortable work with tabulated data: comparison, joining, subtracting, sorting, etc.
• Mapping to Gene Ontology terms, Gene Set Enrichment Analysis
• Network clustering and search for master regulator molecules, visualization of pathway diagrams in several different layouts, export in a number of formats
• Dynamic simulations
• Browsing through several databases
• Possibility to graphically program a specific pipeline (workflow), and add new scripts

The geneXplain platform combines a growing number of analytical modules (bricks) under a standardized interface, which can flexibly be combined to comprehensive workflows via a simple drag-and-drop system. Predefined workflows are already available, as well as state-of-the-art bricks. Also, the scientific community is invited to add their own bricks as scripts or plug-ins into the platform.

A fully functional free trial account, as well as further information, is available on our homepage.

Software Link : geneXplain - Molecular biology Research Software
Read more

Prime - Protein structure prediction Software

Prime is a fully-integrated protein structure prediction program. It provides an easy-to-use interface that takes a novice user intuitively from sequence to alignment to refined structure. Prime also provides expert users complete control over calculational settings to maximize accuracy of predictions. Prime is a powerful and complete tool for generating accurate receptor models for structure-based drug design.
Details
Rational drug design has proven to be an effective and cost-saving approach to drug development. Lead discovery using virtual screening and lead optimization through detailed understanding of ligand-receptor interactions are now indispensable components of pharmaceutical research. An accurate model of the receptor, particularly of the active site, is central to all structure-based drug design efforts. While the recent explosion in genomic data has elucidated many protein sequences, there remain many pharmaceutically relevant targets for which no accurate 3D model exist.

An accurate protein structure prediction can not only provide a model where an experimental structure is unavailable, but can also refine experimental structures obtained through X-ray crystallography or NMR, providing an even more accurate and detailed starting point for subsequent simulations and computational analyses.

Software Link : Prime - Protein structure prediction Software
Read more

Geneious Pro - Bioinformatics software

Geneious Pro is a revolutionary bioinformatics software platform that is both ultra-powerful and easy to use. Scientists, researchers and students are able to search, organize and analyze genomic and protein information via a single desktop program that provides publication ready images to enhance the impact of your research.

Details
Geneious Pro™ is an integrated and extendable software platform for the organization and analysis of biological data that runs on all major operating systems. Geneious Pro is a revolutionary bioinformatic tool that combines industry-leading DNA and protein analysis tools into a single package that is both ultra-powerful and easy to use. Scientists, researchers and students are able to search, organize and analyze genomic and protein information of any size via a single powerful desktop program that provides publication-ready images to enhance the impact of your research.

Software Link : Geneious Pro - Bioinformatics software
Read more
 

Life Science Software Copyright © 2011