Skip to main content

Searching for Rosetta Binaries.

Project description

RosettaPy

A Python utility for wrapping Rosetta command line tools.

GitHub License

CI Status

Python CI Test with Rosetta Dependabot Updates

Quality

codecov CodeFactor Maintainability GitHub repo size

Release

GitHub Release GitHub Release Date

PyPI - Format PyPI - Version PyPI - Status PyPI - Wheel

Python version supported

PyPI - Python Version PyPI - Implementation

Overview

RosettaPy is a Python module designed to locate Rosetta biomolecular modeling suite binaries that follow a specific naming pattern and execute Rosetta in command line. The module includes:

  • An object-oriented RosettaFinder class to search for binaries.
  • A RosettaBinary dataclass to represent the binary and its attributes.
  • A command-line wrapper dataclass Rosetta for handling Rosetta runs.
  • A RosettaScriptsVariableGroup dataclass to represent Rosetta scripts variables.
  • A simplified result analyzer RosettaEnergyUnitAnalyser to read and interpret Rosetta output score files.
  • A series of example applications that follow the design elements and patterns described above.
    • PROSS
    • FastRelax
    • RosettaLigand
    • Supercharge
    • MutateRelax
    • Cartesian ddG (on the way)
  • Unit tests to ensure reliability and correctness.

Features

  • Flexible Binary Search: Finds Rosetta binaries based on their naming convention.
  • Platform Support: Supports Linux and macOS operating systems.
  • Customizable Search Paths: Allows specification of custom directories to search.
  • Structured Binary Representation: Uses a dataclass to encapsulate binary attributes.
  • Command-Line Shortcut: Provides a quick way to find binaries via the command line.
  • Available on PyPI: Installable via pip without the need to clone the repository.
  • Unit Tested: Includes tests for both classes to ensure functionality.

Naming Convention

The binaries are expected to follow this naming pattern:

rosetta_scripts[[.mode].oscompilerrelease]
  • Binary Name: rosetta_scripts (default) or specified.
  • Mode (optional): default, mpi, or static.
  • OS (optional): linux or macos.
  • Compiler (optional): gcc or clang.
  • Release (optional): release or debug.

Examples of valid binary filenames:

  • rosetta_scripts (dockerized Rosetta)
  • rosetta_scripts.linuxgccrelease
  • rosetta_scripts.mpi.macosclangdebug
  • rosetta_scripts.static.linuxgccrelease

Installation

Ensure you have Python 3.6 or higher installed.

Install via PyPI

You can install RosettaPy directly from PyPI:

pip install RosettaPy -U

Usage

Command-Line Shortcut

RosettaPy provides a command-line shortcut to quickly locate Rosetta binaries.

Using the whichrosetta Command

After installing RosettaPy, you can use the whichrosetta command in your terminal.

whichrosetta <binary_name>

Example:

To find the relax binary:

relax_bin=$(whichrosetta relax)
echo $relax_bin

This command assigns the full path of the relax binary to the relax_bin variable and prints it.

Importing the Module

You can also use RosettaPy in your Python scripts.

from RosettaPy import RosettaFinder, RosettaBinary

Finding a Rosetta Binary in Python

# Initialize the finder (optional custom search path)
finder = RosettaFinder(search_path='/custom/path/to/rosetta/bin')

# Find the binary (default is 'rosetta_scripts')
rosetta_binary = finder.find_binary('rosetta_scripts')

# Access binary attributes
print(f"Binary Name: {rosetta_binary.binary_name}")
print(f"Mode: {rosetta_binary.mode}")
print(f"OS: {rosetta_binary.os}")
print(f"Compiler: {rosetta_binary.compiler}")
print(f"Release: {rosetta_binary.release}")
print(f"Full Path: {rosetta_binary.full_path}")

Wrapping the Rosetta

# Create a Rosetta object with the desired parameters
rosetta = Rosetta(
    bin="rosetta_scripts",
    flags=[...],
    opts=[
        "-in:file:s", os.path.abspath(pdb),
        "-parser:protocol", "/path/to/my_rosetta_scripts.xml",
    ],
    output_dir=...,
    save_all_together=True,
    job_id=...,
)

# Create tasks for each variant
tasks = [
    {
        "rsv": RosettaScriptsVariableGroup.from_dict(
            {
                "var1": ...,
                "var2": ...,
                "var3": ...,
            }
        ),
        "-out:file:scorefile": f"{variant}.sc",
        "-out:prefix": f"{variant}.",
    }
    for variant in variants
]

# Run the Rosetta tasks
rosetta.run(inputs=tasks)

# Analyze the results
analyser = RosettaEnergyUnitAnalyser(score_file=rosetta.output_scorefile_dir)
best_hit = analyser.best_decoy
pdb_path = os.path.join(rosetta.output_pdb_dir, f'{best_hit["decoy"]}.pdb')

print("Analysis of the best decoy:")
print("-" * 79)
print(analyser.df.sort_values(by=analyser.score_term))

print("-" * 79)

print(f'Best Hit on this Rosetta run: {best_hit["decoy"]} - {best_hit["score"]}: {pdb_path}')
#

Environment Variables

The RosettaFinder searches the following directories by default:

  1. PATH, which is commonly used in dockerized Rosetta image.
  2. The path specified in the ROSETTA_BIN environment variable.
  3. ROSETTA3/bin
  4. ROSETTA/main/source/bin/
  5. A custom search path provided during initialization.

Running Tests

The project includes unit tests using Python's pytest framework.

  1. Clone the repository (if not already done):

    git clone https://github.com/YaoYinYing/RosettaPy.git
    cd RosettaPy
    
  2. Navigate to the project directory:

    cd RosettaPy
    
  3. Run the tests:

    python -m pytest ./tests
    

Contributing

Contributions are welcome! Please submit a pull request or open an issue for bug reports and feature requests.

License

This project is licensed under the MIT License.

Acknowledgements

  • Rosetta Commons: The Rosetta software suite for the computational modeling and analysis of protein structures.

Contact

For questions or support, please contact:

  • Name: Yinying Yao
  • Email:yaoyy.hi(a)gmail.com

Project details


Release history Release notifications | RSS feed

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

rosettapy-0.1.1rc112.post1.tar.gz (314.9 kB view details)

Uploaded Source

Built Distribution

rosettapy-0.1.1rc112.post1-py3-none-any.whl (41.3 kB view details)

Uploaded Python 3

File details

Details for the file rosettapy-0.1.1rc112.post1.tar.gz.

File metadata

  • Download URL: rosettapy-0.1.1rc112.post1.tar.gz
  • Upload date:
  • Size: 314.9 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: python-requests/2.32.3

File hashes

Hashes for rosettapy-0.1.1rc112.post1.tar.gz
Algorithm Hash digest
SHA256 95fdde1bab6eb22f1d66d8ed45ab7dd159850dc6c08089949e5f7f9f070329d8
MD5 399c01548e88bd1c70b350106492ffd8
BLAKE2b-256 17019b23223b347a7f0e36c42b1daa50fd13c8ab692b135d3c9aa8c057d33a1e

See more details on using hashes here.

File details

Details for the file rosettapy-0.1.1rc112.post1-py3-none-any.whl.

File metadata

File hashes

Hashes for rosettapy-0.1.1rc112.post1-py3-none-any.whl
Algorithm Hash digest
SHA256 29e45c493e5bc68ab69953d482d72463e8cd3aa4247f7494ab5a418a1e59af55
MD5 0e77e6c7c82a6088eccb3a5a80509542
BLAKE2b-256 9cd3d4f4cb20f2810714969e865418452f6c46f1ecc6865ac0e01658c3b6e058

See more details on using hashes here.

Supported by

AWS AWS Cloud computing and Security Sponsor Datadog Datadog Monitoring Fastly Fastly CDN Google Google Download Analytics Microsoft Microsoft PSF Sponsor Pingdom Pingdom Monitoring Sentry Sentry Error logging StatusPage StatusPage Status page