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17 December 2020
Health sciences
The more than 100 medical students who graduated virtually from the University of the Free State (UFS) Faculty of Health Sciences on Monday (14 December), graduated with a pass rate of 98% in a tumultuous year dominated by the COVID-19 pandemic. The MB ChB class of 2020 – a total of 104 students from the School of Clinical Medicine – graduated virtually on Monday due to COVID-19.

The more than 100 medical students who graduated virtually from the University of the Free State (UFS) Faculty of Health Sciences on Monday (14 December), graduated with a pass rate of 98% in a tumultuous year dominated by the COVID-19 pandemic.

The MB ChB class of 2020 – a total of 104 students from the School of Clinical Medicine – graduated virtually on 14 December due to COVID-19. Another virtual graduation is scheduled for 4 January 2021.

An uncomfortable reality
Dr Lynette van der Merwe, undergraduate medical programme director in the School of Clinical Medicine at the UFS, congratulated the latest UFS doctors on their success. Said Dr Van der Merwe: “In a tumultuous year dominated by the COVID-19 pandemic, this group of final-year medical students refused to give in to the pressure and disruption of national lockdown, emergency remote teaching, an adjusted academic calendar, and frontline exposure as healthcare professionals in training.”  

“They persevered against all odds, faced up to an uncomfortable reality, and showed remarkable resilience.”

According to Dr Van der Merwe, the class of 2020 completed the gruelling five-year medical programme with a pass rate of 98,3%, impressing external examiners who commented on their respectful attitude towards patients and thorough knowledge and skill.  

“The School of Clinical Medicine and Faculty of Health Sciences are immensely proud of our new colleagues and look forward to their contribution to the future of healthcare in South Africa. This achievement would not have been possible without the unwavering commitment of the academic and support staff who guided our students and led the way for them to achieve a life-long dream.”  

“We look back with gratitude on a year that required more than the usual amount of adaptability, creativity, innovation, faith, patience, bravery, and endurance.  It is these qualities that set apart the doctors who graduate from the UFS, and those who train them,” says Dr Van der Merwe.

Hope for the future
She says while COVID-19 is still a harsh reality and the future holds much uncertainty, 2020 has shown that there is hope when we face challenges with grace under pressure, and a firm belief in our goals and values. “Class of 2020, may you continue to rise above fear, chaos and disappointment, may you take heart and walk your journey with strength, may you bring healing to our people and lead us well.”

Drs Kaamilah Joosub and Lynette Upman, who also graduated on Monday, were awarded the prestigious Bongani Mayosi Medical Students Academic Prize – a national award which aims to recognise final-year medical students who epitomise the academic, legendary, and altruistic life of the late Prof Mayosi. The awards are presented to final-year MB ChB students from all South African medical faculties. This is the first year it has been awarded.

View the virtual graduation

News Archive

UFS study on cell development in top international science journal
2008-09-16

A study from the University of the Free State (UFS) on how the change in the packaging of DNA with cell development influenced the expression of genes, will be published in this week’s early edition of the prestigious international, peer-reviewed science journal, the Proceeding of the National Academy of Sciences of the USA (PNAS).

The PNAS journal has an impact factor of 10, which means that studies published in the journal are, on average, referred to by ten other scientific studies in a two year period. The South African Journal of Science, by comparison, has an impact factor of 0.7.

The UFS study, funded by the Wellcome Trust and the National Research Foundation (NRF), looked at how the change in the packaging of DNA with cell development influenced the expression of genes. It is very relevant to research on stem cells, an area of medicine that studies the possible use of undifferentiated cells to replace damaged tissue.

Prof. Hugh Patterton, of the Department of Microbial, Biochemical and Food Biotechnology at the UFS, who led the study, said: "We are extremely proud of this study. It was conceived in South Africa, it was performed in South Africa, the data were analysed in South Africa, and it was published from South Africa."

When a gene is expressed, the information encoded in the gene is used to manufacture a specific protein. In eukaryotes, which include humans, there is approximately 1m of DNA, containing the genes, in every cell. This length of DNA has to fit into a cell nucleus with a diameter of only about 10 micrometer. In order to fit the DNA into such a small volume, eukaryotic cells wrap their DNA onto successive protein balls, termed nucleosomes. Strings of nucleosomes, resembling a bead of pearls, is folded into a helix to form a chromatin fiber. The study from the UFS investigated how the binding of a specific protein, termed a linker histone, that binds to the length of DNA between nucleosomes, influenced the formation of the chromatin fiber and also the activity of genes.

"We found that the linker histone bound to chromatin in yeast, which we use as a model eukaryote, under conditions where virtually all the genes in the organism were inactive. It was widely believed that the binding of the linker histone caused the inactivation of genes. We studied the relationship between the amount of linker histone bound in the vicinity of each gene and the expression of that gene for all the genes in yeast, using genomic techniques. We made the surprising discovery that even through the linker histone preferentially bound to genes under conditions where the genes were shut off, this inactivation of genes was not caused by the binding of the linker histone and folding of the chromatin,” said Prof. Patterton.

He said: “Instead our data strongly suggested that the observed anti-correlation was due to the movement of enzymes along the DNA molecule, involved in processing the information in genes for the eventual manufacture of proteins. This movement of enzymes displaced the linker histones from the DNA. This finding now requires a rethink on aspects of how packaging of DNA influences gene activity."

Prof. Patterton said that his research group, using the Facility for Genomics and Proteomics as well as the Bioinformatics Node at the UFS, was currently busy with follow-up studies to understand how other proteins in nucleosomes affected the activities of genes, as well as with projects to understand how chemicals found in red wine and in green tea extended lifespan. "We are certainly having a marvelous time trying to understand the fundamental mechanisms of life, and the UFS is an exciting place to be if one was interested in studying life at the level of molecules," he said.


Media Release
Issued by: Lacea Loader
Assistant Director: Media Liaison
Tel: 051 401 2584
Cell: 083 645 2454
E-mail: loaderl.stg@ufs.ac.za  
18 September 2008
 

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