Search bioRxivSearch

Biology subjects

Moura, S.

Publications and source records attributed to Moura, S..

2 recordsLinked to original sources

Aβ toxicity rescued by protein retention in the ER

Accumulation of A{beta} in the brain is one of the hallmarks of Alzheimers disease (AD). In the adult Drosophila brain, human A{beta} over-expression is toxic and leads to deterioration of climbing ability and shortened lifespan. However, it remains unknown if A{beta} is inherently toxic or if it triggers toxic downstream pathways that lead to neurodegeneration. Here, we describe a novel, and previously unidentified, protective role of intracellular laminin chain accumulation. Despite high A{beta} levels, over-expression of the extracellular matrix protein subunit Laminin B1 (LanB1) resulted in a robust rescue of toxicity, highlighting a potential protective mechanism of resistance to A{beta}. Over-expression of other Laminin subunits and a Collagen IV subunit also significantly rescued A{beta} toxicity, while combining LanB1 with these subunits led to an even larger rescue. Imaging revealed that LanB1 was retained in the ER but had no effect on the secretion of A{beta} into the extracellular milieu. LanB1 rescued toxicity independently of the IRE1/XBP1-mediated branch of the ER stress response. Interestingly, over-expression of ER-targeted GFP also rescued A{beta} toxicity, indicating a potentially broader benefit of ER protein retention. Finally, in proof-of-principle lentiviral transduction experiments using murine organotypic hippocampal slice cultures, over-expression of mouse Lamb1 resulted in ER-retention in transduced cells, highlighting a conserved mechanism. Typically, retention of proteins in the ER is detrimental to cellular health, but in the context of neuronal A{beta} toxicity it may prove to be beneficial and a new therapeutic avenue for AD.

neuroscience

Discovery of an unusual high number of de novo mutations in sperm of older men using duplex sequencing

De novo mutations (DNMs) are an important player in heritable diseases and evolution. Of particular interest are highly recurrent DNMs associated with congenital disorders that have been described as selfish mutations expanding in the male germline, thus becoming more frequent with age. Here, we have adapted duplex sequencing (DS), an ultra-deep sequencing method that renders sequence information on both DNA strands; thus, one mutation can be reliably called in millions of sequenced bases. With DS, we examined [~]4.5 kb of the FGFR3 coding region in sperm DNA from older and younger donors. We identified sites with variant frequencies of 10-4 to 10-5, with an overall mutation frequency of the region of [~]6x10-7. Some of the substitutions were re-current and were found at a higher variant frequency in older donors than in younger ones, or exclusively, in older donors. Also, older donors harbored more mutations associated with congenital disorders. Other mutations were present in both age groups suggesting that these might result from a different mechanism (e.g., post-zygotic mosaicism). We also observed that independent of age, the frequency and deleteriousness of the mutational spectra was more similar to COSMIC than to gnomAD variants. Our approach is an important strategy to identify mutations that could be associated with a gain-of-function of the receptor tyrosine kinase activity, with unexplored consequences in a society with delayed fatherhood.

genetics