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Home NEWS Science News Cancer

Study reveals aggressive prostate cancer linked to ancestral heritage

Bioengineer by Bioengineer
August 31, 2022
in Cancer
Reading Time: 6 mins read
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Two pioneering studies published simultaneously today in Nature and Genome Medicine, have identified genetic signatures explaining ethnic differences in the severity of prostate cancer, particularly in sub-Saharan Africa.

Professor Vanessa Hayes

Credit: Stefanie
Zingsheim, University of Sydney

Two pioneering studies published simultaneously today in Nature and Genome Medicine, have identified genetic signatures explaining ethnic differences in the severity of prostate cancer, particularly in sub-Saharan Africa.

Through genetic sequencing of prostate cancer tumours from Australian, Brazilian and South African donors, the team identified a new prostate cancer taxonomy (classification scheme) and cancer drivers that not only distinguish patients by genetic ancestry, but also predict which cancers are likely to become life-threatening – a task that currently proves challenging.

“Our understanding of prostate cancer has been severely limited by a research focus on Western populations,”said senior author Professor Vanessa Hayes, genomicist and Petre Chair of Prostate Cancer Research at the University of Sydney’s Charles Perkins Centre and Faculty of Medicine and Health in Australia.

“Being of African descent, or from Africa, more than doubles a man’s risk for lethal prostate cancer. While genomics holds a critical key to unravelling contributing genetic and non-genetic factors, data for Africa has till now, been lacking.”

“Prostate cancer is the silent killer in our region,” said University of Pretoria’s Professor Riana Bornman, an international expert in men’s health and clinical lead for the Southern African Prostate Cancer Study in South Africa.

 “We had to start with a grassroots approach, engaging communities with open discussion, establishing the infrastructure for African inclusion in the genomic revolution, while determining the true extent of prostate disease.”

Through sophisticated whole genome sequencing (a way of mapping the entire genetic code of cancer cells), over two million cancer-specific genomic variants were identified in 183 untreated prostate tumours from men living across the three study regions. 

“We found Africans to be impacted by a greater number and spectrum of acquired (including cancer driver) genetic alterations, with significant implications for ancestral consideration when managing and treating prostate cancer,” said Professor Hayes. 

“Using cutting-edge computational data science which allowed for pattern recognition that included all types of cancer variants, we revealed a novel prostate cancer taxonomy which we then linked to different disease outcomes,” said Dr Weerachai Jaratlerdsiri, a computational biologist from the University of Sydney and first author on the Nature paper.

“Combining our unique dataset with the largest public data source of European and Chinese cancer genomes allowed us to, for the first time, place the African prostate cancer genomic landscape into a global context.”

As part of her PhD at the University of Sydney, Dr Tingting Gong, first author on the Genome Medicine paper, painstakingly sifted through the genomic data for large changes in the structure of chromosomes (molecules that hold genetic information). These changes are often overlooked because of the complexity involved in computationally predicting their presence, but are an area of critical importance and contribution to prostate cancer.

“We showed significant differences in the acquisition of complex genomic variation in African and European derived tumours, with consequences for disease progression and new opportunities for treatment,” said Dr Gong.

This cancer genome resource is possibly the first and largest to include African data, in the world.

“Through African inclusion, we have made the first steps not only towards globalising precision medicine but ultimately to reducing the impact of prostate cancer mortality across rural Africa,” explains Professor Bornman.

“A strength of this study was the ability to generate and process all data through a single technical and analytical pipeline,” added Professor Hayes.

The research featured in the Nature and Genome Medicine paper is part of the legacy of the late Archbishop Emeritus Desmond Tutu. He was the first African to have his complete genome sequenced, data which would be an integral part of genetic sequencing and prostate cancer research in southern Africa.

The results of the sequencing were published in Nature in 2010.

“Diagnosed at age 66 with advanced prostate cancer, to which he succumbed in late December 2021, the Archbishop was an advocate not only for prostate cancer research in southern Africa, but also the benefits that genomic medicine would offer all peoples,” recollected Professor Hayes.

“We hope this study is a first step to that realisation.”

The international research team included academics from the University of Sydney in Australia, and affiliated institutions at St Vincent’s Hospital, Royal Prince Alfred Hospital, Garvan Institute of Medical Research and Chris O’Brien Lifehouse; in South Africa from the University of Pretoria, University of Limpopo, and Sefako Makgatho Health Science University, and including the Dr George Mukhari Academic Hospital, Kalafong Academic Hospital and National Health Laboratory Services; in Brazil from Universidade Federal do Rio Grande do Sul, and from the University of Manchester in the United Kingdom, with additional contributions for the Genome Medicine paper from the University of Melbourne and Walter and Eliza Hall Institute in Australia.

Professor Hayes acknowledges the foresight of The Petre Foundation and donor Daniel Petre who has supported her vision for inclusive genomic research for over eight years.

—ENDS—

Declaration: The authors declare no competing interests

Download images and video: https://cloudstor.aarnet.edu.au/plus/s/zfXNwYvZhpz8Zz9

(Interview footage of the late Archbishop Emeritus Desmond Tutu available upon request)

Read the Nature paper (link live after embargo lifts): https://www.nature.com/articles/s41586-022-05154-6

DOI: 10.1038/s41586-022-05154-6

Read the Genome Medicine paper (link live after embargo lifts): https://link.springer.com/article/10.1186/s13073-022-01096-w

DOI: 10.1186/s13073-022-01096-w

Media enquiries and interview requests:

Michelle Blowes

University of Sydney, Australia

M: +61 478 303 173
E: [email protected]

 

Ivy Shih

University of Sydney, Australia

M : +61 439 160 475
E : [email protected]

 

Prim Gower
University of Pretoria, South Africa

P: 083 229 9011

E: [email protected] 

 

 

 

The University of Sydney, Australia

The University of Sydney is one of the world’s leading, comprehensive research and teaching universities. We offer an exceptional range of disciplines – more than 400 areas of study – and our community includes more than 70,000 students, 8000 permanent and fixed-term staff and 350,000 alumni in more than 170 countries.

Leadership has always been at the core of our values. We were one of the first universities in the world to admit students solely on academic merit, and to open our doors to women on the same basis as men. Our aim is to make lives better not just by producing leaders of society, but through equipping our people with the qualities that allow them to serve all of our communities at every level.

In creating the first university in Australia in 1850, our founders recognised the power of education to inspire positive change. We hold that belief just as strongly today.

Currently ranked 4th in the world in the QS Graduate Employability Rankings and 41st in the QS World University Rankings, the University of Sydney is also consistently placed among the top universities in the world.

The University of Pretoria, South Africa

The University of Pretoria (UP) is one of the largest contact and residential universities in South Africa, with its administration offices located on the Hatfield Campus, Pretoria. This 114-year-old institution is also the largest producer of research in South Africa.

Spread over seven campuses, it has nine faculties and a business school, the Gordon Institute of Business Science (GIBS). It is the only University in the country with a Faculty of Veterinary Science, which is ranked top in Africa. UP has 120 academic departments and 92 centres and institutes, accommodating more than 56 000 students and offering about 1 100 study programmes.

UP is one of the top five universities in South Africa, according to the 2019-2020 rankings by the Center for World University Rankings. The QS World University Rankings also placed UP among the top 100 universities worldwide in three fields of study (veterinary science, theology, and law), and UP is in the top 1% in eight fields of study (agricultural sciences, clinical medicine, engineering, environment/ecology, immunology, microbiology, plant and animal sciences and social sciences), according to the Web of Science Essential Indicators.

For more information, go to www.up.ac.za



Journal

Nature

DOI

10.1038/s41586-022-05154-6

Subject of Research

People

Article Title

‘African-specific molecular taxonomy of prostate cancer’

Article Publication Date

31-Aug-2022

COI Statement

The authors declare no competing interests

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