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31 August 2021 | Story Leonie Bolleurs | Photo Supplied
UFS scientists involved in revolutionary protein structure prediction
Left: Dr Ana Ebrecht, a former postdoctoral student of the UFS, was part of the team that validated the data for the Science paper. Right: Prof Dirk Opperman was involved in a revolutionary finding in biology, which predicts the structure of a protein. His work in collaboration with other scientists has been published in Science.

Prof Dirk Opperman, Associate Professor in the Department of Microbiology and Biochemistry at the University of the Free State (UFS), in collaboration with Dr Ana Ebrecht (a former postdoc in the same department) and Prof Albie van Dijk from the Department of Biochemistry at the North-West University (NWU), was part of an international collaboration of researchers who participated in solving an intricate problem in science – accurate protein structure prediction.

The team of researchers recently contributed to an influential paper describing new methods in protein structure prediction using machine learning. The paper was published in the prestigious scientific journal, Science.

“These new prediction methods can be a game changer,” believes Prof Opperman.

“As some proteins simply do not crystalise, this could be the closest we get to a three-dimensional view of the protein. Accurate enough prediction of proteins, each with its own unique three-dimensional shape, can also be used in molecular replacement (MR) instead of laborious techniques such as incorporating heavy metals into the protein structure or replacing sulphur atoms with selenium,” he says.

Having insight into the three-dimensional structure of a protein has the potential to enable more advanced drug discovery, and subsequently, managing diseases.

Exploring several avenues …

According to Prof Opperman, protein structure prediction has been available for many years in the form of traditional homological modelling; however, there was a big possibility of erroneous prediction, especially if no closely related protein structures are known.

Besides limited complementary techniques such as nuclear magnetic resonance (NMR) and electron microscopy (Cryo-EM), he explains that the only way around this is to experimentally determine the structure of the protein through crystallisation and X-ray diffraction. “But it is a quite laborious and long technique,” he says.

Prof Opperman adds that with X-ray diffraction, one also has to deal with what is known in X-ray crystallography as the ‘phase problem’ – solving the protein structure even after you have crystallised the protein and obtained good X-ray diffraction data, as some information is lost.

He states that the phase problem can be overcome if another similar-looking protein has already been determined.

This indeed proved to be a major stumbling block in the determination of bovine glycine N-acyltransferase (GLYAT), a protein crystallised in Prof Opperman’s research group by Dr Ebrecht, currently a postdoc in Prof Van Dijk’s group at the NWU, as no close structural homologous proteins were available.

“The collaboration with Prof Opperman’s research group has allowed us to continue with this research that has been on hold for almost 16 years,” says Prof Van Dijk, who believes the UFS has the resources and facilities for structural research that not many universities in Africa can account for.

The research was conducted under the Synchrotron Techniques for African Research and Technology (START) initiative, funded by the Global Challenges Research Fund (GCRF). After a year and multiple data collections at a specialised facility, Diamond Light Source (synchrotron) in the United Kingdom, the team was still unable to solve the structure.

Dr Carmien Tolmie, a colleague from the UFS Department of Microbiology and Biochemistry, also organised a Collaborative Computational Project Number 4 (CCP4) workshop, attended by several well-known experts in the field. Still, the experts who usually participate in helping students and researchers in structural biology to solve the most complex cases, were stumped by this problem.

Working with artificial intelligence

“We ultimately decided to turn to a technique called sulphur single-wavelength anomalous dispersion (S-SAD), only available at specialised beam-lines at synchrotrons, to solve the phase problem, says Prof Opperman.

Meanwhile, Prof Randy Read from the University of Cambridge, who lectured at the workshop hosted by Dr Tolmie, was aware of the difficulties in solving the GLYAT structure. He also knew of the Baker Lab at the University of Washington, which is working on a new way to predict protein structures; they developed RoseTTAaFold to predict the folding of proteins by only using the amino acid sequence as starting point.

RoseTTAaFold, inspired by AlphaFold 2, the programme of DeepMind (a company that develops general-purpose artificial intelligence (AGI) technology), uses deep learning artificial intelligence (AI) to generate the ‘most-likely’ model. “This turned out to be a win-win situation, as they could accurately enough predict the protein structure for the UFS, and the UFS in turn could validate their predictions,” explains Prof Opperman.

A few days after the predictions from the Baker Lab, the S-SAD experiments at Diamond Light Source confirmed the solution to the problem when they came up with the same answer.

Stunning results in a short time

“Although Baker’s group based their development on the DeepMind programme, the way the software works is not completely the same,” says Dr Ebrecht. “In fact, AlphaFold 2 has a slightly better prediction accuracy. Both, however, came with stunningly good results in an incredibly short time (a few minutes to a few hours),” she says.

Both codes are now freely available, which will accelerate improvements in the field even more. Any researcher can now use that code to develop new software. In addition, RoseTTAFold is offered on a platform accessible to any researcher, even if they lack knowledge in coding and AI.

News Archive

UFS staff among proud PhD graduates
2013-06-28

Prof Dave Lubbe with his two daughters, Leandi Steenkamp (left) and Nandi Lubbe.
Photo: Stefan Lotter

An exceptional moment at this year's graduation ceremony was when the two daughters of an academic, Prof Dave Lubbe of the Centre for Accounting, obtained their master's degrees. "It is indeed a highlight in my career that my daughters received their master's degrees cum laude at the same graduation ceremony, under my supervision!"

Prof Lubbe's two daughters, Nandi Lubbe and Leandi Steenkamp, both received their MCom with distinctions in Accounting. They completed their degrees under the supervision of Prof Lubbe and Nandi also won the Dean's medal as the best M student in the Faculty of Economic and Management Sciences.

Julia Ramabenyane Mamosebatho and Emmie Smit. Julia, of the Faculty of Education: School for Social Sciences and Language Education, received her PhD in Curriculum Studies. Her thesis was on The facilitative role of Grade 1 teachers in the development of reading skills in Sesotho. Emmie, from the Office of the Dean: Education, did her thesis on Appreciating the University of the Free State's transformation: A juxtaposed journey with Alice to Wonderland. With this, she obtained her PhD in Higher Education Studies.

 

Merridy Wilson-Strydom and Deidre van Rooyen. Merridy obtained her PhD in Higher Education Studies. Her thesis A framework for facilitating the transition from school to university in South Africa: A capabilities approach, is a comprehensive and ambitious research project that was accomplished with great academic mastery. With her thesis, Civic culture and local economic development in a small town, Deidre obtained her PhD in Development Studies.

 

 
 The Institute for Groundwater Studies (IGS) boasted with five students who received their doctor’s degrees at this Winter Graduation. They are, from the left, front: Vierah Hulley, Chris Moseki, Ferdie Linde, Abdon Atangana and Jacob Nyende. Back is Prof Jopie Botha, Prof Gerrit van Tonder and Dr Danie Vermeulen.

 

 

Modulathoko Irvin Mabokgole received his master's degree in Mathematical Statistics and Actuarial Science. He also received the Senate Medal for best master's student at the university.

 

 

Dave Mills obtained his master's degree in Practical Theology.

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Manie Moolman received his PhD in Higher Education Studies. With his thesis, Competence directives for enhancing the employability of hospitality management graduates in South Africa, he addresses one of the most important challenges facing higher education training in hospitality management, namely the training of employable graduates.

 

 

Jo-Marí Visser obtained her PhD in Criminal and Medical Law. With her thesis First generation forensic evidence and its influence on legal decision-making: A South African perspective, she investigates forensic evidence and the collection thereof at the crime scene.

 

Maralize Conradie received her master's degree in Commercial Law. The subject of her thesis is A critical analysis of the right to fair labour practices.

 

Jan Beukes received his PhD in Music – Performing Arts. This lecturer at the Odeion School of Music's thesis is titled: Oorwegings by die realisering en dokumentering van 'n duet- of duo-orreltranskripsie van Fauré se Requiem (op. 48).

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