Completed Genetics & Molecular Biology Brain & Nervous System

Mitochondrial DNA - expression, disease and treatment.

In plain English

AI plain-English summary

Every human cell carries a second genome inside mitochondria, and when it malfunctions, it can cause devastating multi-system disease. Mitochondrial DNA defects are currently untreatable and linked to common degenerative disorders, yet the fundamental mechanisms of mitochondrial gene expression remain poorly understood. This research aims to close that gap by identifying the critical factors that control how mitochondrial genes are read and translated into proteins, and by pinpointing the specific defects that cause disease. The team also plans to develop methods to prevent transmission of mitochondrial DNA disease from mother to child, and to understand why neurological deficits arise in patients. If successful, this work could lead to new treatments for mitochondrial disorders and clarify whether mitochondrial DNA plays a causal role in common chronic diseases such as Parkinson’s or diabetes. The project is a mix of fundamental science and clinical translation—it will train young researchers and engage with policymakers, but the immediate practical applications are several steps away. Similar fundamental work on mitochondrial biology has already enabled IVF-based techniques to prevent disease inheritance.

View original technical description
Mitochondrial DNA is present in all human cells and correct expression of the mitochondrial genome is essential for life. Mitochondrial genetic defects cause multisystem disease and they have been linked to common degenerative disorders. Our major scientific and technological advances over the last few years, coupled with expansion of our clinical cohorts, mean that we are strategically poised to improve the lives of patients with mitochondrial disease. This aligns with two of the major challeng es of the Wellcome Trust Strategic Plan 2010-2020 - understanding the brain and maximise the health benefits of genetics and genomics. To achieve these strategic aims we propose to integrate basic and clinical research, train exceptional young researchers and undertake public and policy engagement to address four specific research themes with the following key goals: 1. Identify critical factors and pathogenic defects underlying mitochondrial gene expression 2. Prevent transmission of mitochon drial DNA disease 3. Understand the nature, mechanisms and treatment of neurology deficits in patients with mitochondrial DNA disease 4. Determine the role of mitochondrial DNA in common chronic human diseases.

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Researchers

Doug Turnbull (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Mitochondrial genomics in human health and diseases. (How variation in nuclear and mitochondrial DNA causes rare mitochondrial diseases and common late-onset human disorders)
Quality Control of the Mitochondrial Gene Expression System in Health and Disease
Regulation of mitochondrial expression
Genetic factors modulating the expression of mitochondrial disease.
Mitochondrial Genetics: Mitochondrial genome engineering to unravel the genetic links between mitochondrial gene regulation and human disease for future mechanism-based therapies

Original classification

Wellcome Trust Centre

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