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Biology subjects

Cornelia Rüb

Publications and source records attributed to Cornelia Rüb.

2 recordsLinked to original sources

IMiQC: a novel protein quality control compartment protecting mitochondrial functional integrity

Aggregation processes can cause severe perturbations of cellular homeostasis and are frequently associated with diseases. We performed a comprehensive analysis of mitochondrial quality and function in presence of misfolded, aggregation-prone polypeptides. Although we observed significant aggregate formation inside mitochondria, we observed only a minor impairment of mitochondrial function. We could show that detoxification of misfolded reporter polypeptides as well as endogenous proteins inside mitochondria takes place via their sequestration into the specific organellar deposit site Intra-Mitochondrial Protein Quality Control Compartment (IMiQC). Only minor amounts of co-aggregated proteins were associated with IMiQC and neither resolubilization nor degradation by the mitochondrial PQC system were observed. The single IMiQC aggregate deposit was not transferred to daughter cells during cell division. Detoxification of misfolded polypeptides via IMiQC formation was highly dependent on a functional mitochondrial fission machinery. We conclude that the formation of the aggregate deposit is an important mechanism to maintain full functionality of mitochondria under proteotoxic stress conditions.\n\nList of Abbreviations

Cell Biology

Amyloid β-peptides interfere with mitochondrial preprotein import competence by a co-aggregation process

A{beta} peptides play a central role in the etiology of Alzheimer disease (AD) by exerting cellular toxicity correlated with aggregate formation. Experimental evidences showed an intraneuronal accumulation of A{beta} peptides and an interference with mitochondrial functions. Nevertheless, the relevance of intracellular A{beta} peptides in the pathophysiology of AD remained controversial. Here, we found that the two major species of A{beta} peptides, in particular A{beta}42, exhibited a strong inhibitory effect on the preprotein import reactions essential for mitochondrial biogenesis. However, A{beta} peptides interacted only weakly with mitochondria and did not affect the inner membrane potential or the structure of the preprotein translocase complexes. A{beta} peptides significantly decreased the import competence of mitochondrial precursor proteins through a extra-mitochondrial co-aggregation mechanism. Co-aggregation and import inhibition were significantly stronger in case of the longer peptide A{beta}42, correlating with its importance in AD pathology. Our results demonstrate that a direct interference of aggregation-prone A{beta} peptides with mitochondrial protein biogenesis represents a crucial aspect of the pathobiochemical mechanisms contributing to cellular damage in AD.

Cell Biology