Postdoctoral Associate in coarse-grained molecular modeling

CHARMM-GUI

Województwo pomorskie

On-site

PLN 121,867 - 145,972

Full time

14 days+
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Benefits offered by this job

Health insurance
Pension plan

Job summary

A research institution in Poland is seeking a Postdoctoral Associate in coarse-grained molecular modeling. The successful candidate will work on molecular dynamics simulations and analyze collective motions in proteins and molecular motors. Qualified candidates should have a Ph.D. in related fields and experience in computational methods, data analysis, and UNIX systems. The position is a full-time, 1-year contract with a gross salary of 12000 PLN. Applications are due by April 30, 2026.

Qualifications

  • Ph.D. degree or evidence to be conferred by employment start date.
  • Command of English sufficient for scientific communication.
  • Experience in force-field development is desirable.
  • Experience in metadynamics is desirable.

Responsibilities

  • Identifying collective motions in proteins using molecular dynamics.
  • Investigating collective motions in rotatory molecular motors.
  • Post-processing molecular dynamics results with statistical analysis.

Skills

Knowledge of molecular quantum mechanics
Experience in running molecular dynamics simulation
Ability to work with UNIX systems
Knowledge of statistical methods of data analysis
Command of English

Education

Ph.D. degree in Chemistry, Physics, Biology, or related disciplines

Tools

UNIX
Fortran/C/C++

Job description

CHARMM is a versatile program for atomic-level simulation of many-particle systems, particularly macromolecules of biological interest. - M. Karplus

Postdoctoral Associate in coarse-grained molecular modeling

Date

2026-03-08

Location

Laboratory of Molecular Modeling, Faculty of Chemistry, University of Gdansk, Gdansk, Poland

Description

The position is associated with the grant project entitled Correlated mean-field interactions propagated along polypeptide chain as a key to understanding the structure formation, dynamics, and allostery of proteins and physics-based modeling thereof, financed by the National Science Centre of Poland (NCN). The project is directed by Prof. Jozef Adam Liwo, Faculty of Chemistry, University of Gdansk, Poland

The candidates must fulfill the following requirements:

  • Ph.D. degree in Chemistry, Physics, Biology, Biotechnology or related disciplines or evidence that the degree will be conferred by the start of the employment. By the rules of the grants agency (NCN), the date of conferring the Ph.D. degree must not be earlier than 12 years before the start of the employment financed from the project.
  • Command of English sufficient to read scientific papers and for communication.
  • Knowledge of molecular quantum mechanics, statistical mechanics, and methods of computational chemistry. Experience in force-field development is desirable.
  • Experience in running and analysing the results of molecular dynamics simulation. Experience in metadynamics and extensions of molecular dynamics (replica exchange) is desirable.
  • Knowledge of statistical methods of data analysis. Familiarity with Principal Component Analysis and machine learning is desirable.
  • Knowledge of the basic principles of protein structure organization.
  • Ability to work with UNIX-operated workstations at least at the medium-advanced level, including the ability to write UNIX scripts. Literacy in Fortran/C/C++ is desirable.
  • Reliability and ability to solve scientific problems independently.

Project information:

Proteins are macromolecules with highly organized structures and highly concerted dynamics, which are manifested as allosteric communication enabling, e.g., signal transduction, and in motility inherent in molecular motors. Very accurate methods based on Artificial Intelligence, such as AlphaFold in the first place, have recently been developed for modeling protein structures but we are still far from understanding how interatomic interactions converge into certain structural patterns and concerted motions. The bottom-up coarse-grained approaches can be used to find the solution of this problem.

In our laboratory, we are developing the UNRES coarse-grained model of proteins, in which a polypeptide chain is represented by the alpha-carbon trace with united peptide groups and united side chains as interaction sites. This model is efficient in simulating protein structure and dynamics, enabling 1000-fold extension of the simulation time-scales compared to all-atom approaches. The physical basis of UNRES enables us also to interpret the components of the coarse-grained force field as pre-determined blocks of interactions that organize protein structure and dynamics. When all-atom approaches are used, such organized patterns could be discerned only by applying Principal Component Analysis and similar techniques. Recently, we discovered new coarse-grained terms that correspond to long-range collective interactions along extended and helical sections of polypeptide chains.

The aim of this project is (i) to determine how long-range correlations between amino-acid residues sitting on distant parts of the polypeptide chain, which do not interact with each other directly contribute to the formation of protein tertiary structure, (ii) to use the obtained results in enriching the coarse-grained UNRES force field in the respective effective energy terms, which will presumably enhance its power to correctly predict global complicated folds, (iii) to investigate if and how these correlations contribute to the protein dynamics, especially to allosteric interaction and to the exceptional performance of molecular rotatory motors.

Tasks assigned to the position:

  • Identifying collective motions in selected proteins that are responsible for allosteric communication by means of all-atom molecular dynamics with post-processing using Principal Component Analysis and machine-learning techniques.
  • Identifying the collective motions in the proteins studied by all-atom molecular dynamics in task 1 by means of coarse-grained simulations with UNRES and determining the contribution of new correlation terms in UNRES to the collective motions and allosteric communication.
  • Investigating the collective motions in selected rotatory molecular motors by coarse-grained molecular dynamics simulations with UNRES containing new correlation terms and auxiliary all-atom molecular dynamics simulations.

Conditions of employment:

  • Full-time 1-year job contract, extendable to 2 years.
  • Gross-gross salary: 12000 PLN. The gross-gross salary includes health insurance and pension plan.
  • Approximate date of employment start: July 1, 2026 or later (no later than January 1, 2027).
How to Apply

Email the electronic versions/scans of the documents specified below to Prof. J.A. Liwo at adam.liwo@ug.edu.pl. The documents (in paper form) can also be submitted in person to the Office of the Dean of the Faculty of Chemistry, University of Gdansk, ul. Wita Stwosza 63, 80-308 Gdansk, Poland or sent by regular mail to Prof. J.A. Liwo at the above address.

The application documents must include the following:

  • Cover letter. It can be contained in the email body.
  • CV including the list of publications.
  • A copy of Ph.D. diploma or documented proof that the applicant will obtain the Ph.D. degree (scan/electronic version acceptable).
  • At least one recommendation letter from a previous supervisor; applicants who apply for the first postdoc position must supply the recommendation letter from the Ph.D. work supervisor. The recommendation letter has to be emailed by the recommender directly to adam.liwo@ug.edu.pl.

Applications should be submitted by April 30, 2026. Applications submitted after this date will be considered until the candidate for the position is finally selected.

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