Completed Infection & Immunity Cells, Biochemistry & Physiology

Proteostasis and Autophagy in Immune Senescence

In plain English

AI plain-English summary

As people age, their immune cells lose the ability to recycle damaged proteins, and this project aims to reverse that decline. This matters because ageing weakens the immune system—a process called immune senescence—making older adults more vulnerable to infections and cancer. The cellular machinery that clears out faulty proteins, known as autophagy, slows down with age, but the specific proteins involved have remained unclear. The researchers have already discovered that boosting autophagy can rejuvenate aged immune cells in the lab. They now plan to identify exactly which proteins need to be recycled and how to trigger that process. If successful, this work could lead to therapies that restore immune function in older people, potentially reducing the severity of infections or improving responses to vaccines and cancer treatments. The project is primarily fundamental science—it addresses a basic gap in understanding how cells age. However, similar fundamental discoveries about cellular recycling pathways have already led to insights into neurodegenerative diseases and metabolic disorders. A clearer picture of how protein degradation controls immune ageing could eventually open the door to drugs that extend not just lifespan, but the number of years people remain healthy.

View original technical description
Lymphocyte function underpins effective immunity to infection and cancer, and is adversely affected by age in a process called immune senescence, a major obstacle to having a healthy lifespan. The cellular basis of T cell senescence is largely unknown. Maintaining proteostasis, regulated by protein synthesis and degradation, in the face of intrinsic and environmental insults is a key determinant of cellular and organismal lifespan. We will address the hypothesis that modulating the conserved degradation and recycling process known as autophagy, can restore immune responses in lymphocytes in the elderly. We have shown that autophagy prevents immune aging, and demonstrated a decline in autophagic flux in lymphocytes with age, and a global age-related decline of protein translation. But it is uncertain which of the synthesized and degraded proteins are most important. It is clear, however, that the induction of specific repair pathways, including autophagy, extends life and health span. We have uncovered a novel pathway that rejuvenates lymphocyte function by regulating autophagy translationally, which we intend now to fully characterize. Our goal is to identify potential therapeutic strategies for restoring health span in the elderly. This work will also address fundamental gaps in our understanding of the aging process.

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Researchers

Anna Katharina (Katja) Simon (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Reversing senescence and exhaustion signalling pathways in primary human T lymphocytes during ageing
Immunity in health and ageing: dissecting the role of the 'non-canonical autophagy' pathway
Regulation of DNA damage signaling by autophagy in senescence.
Identifying the mechanisms of persistent mTORC1 in senescence
The integration of human T cell senescence and function at the molecular level

Original classification

Investigator Award in Science

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