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Cleverley, K.

Publications and source records attributed to Cleverley, K..

2 recordsLinked to original sources

The effects of CSTB duplication on APP/amyloid-β pathology and cathepsin activity in a mouse model

People with Down syndrome (DS), caused by trisomy of chromosome 21 have a greatly increased risk of developing Alzheimers disease (AD). This is in part because of triplication of a chromosome 21 gene, APP. This gene encodes amyloid precursor protein, which is cleaved to form amyloid-{beta} that accumulates in the brains of people who have AD. Recent experimental results demonstrate that a gene or genes on chromosome 21, other than APP, when triplicated significantly accelerate amyloid pathology in a transgenic mouse model of amyloid-{beta} deposition. Multiple lines of evidence indicate that cysteine cathepsin activity influences APP cleavage and amyloid-{beta} accumulation. Located on human chromosome 21 (Hsa21) is an endogenous inhibitor of cathepsin proteases, CYSTATIN B (CSTB) which is proposed to regulate cysteine cathepsin activity in vivo. Here we determined if three copies of the mouse gene Cstb is sufficient to modulate beta amyloid (A{beta}) accumulation and cathepsin activity in a transgenic APP mouse model. Duplication of Cstb resulted in an increase in transcriptional and translational levels of Cstb in the mouse cortex but had no effect on the deposition of insoluble A{beta} plaques or the levels of soluble or insoluble A{beta}42, A{beta}40, or A{beta}38 in 6-month old mice. In addition, the increased CSTB did not alter the activity of cathepsin B enzyme in the cortex of 3-month old mice. These results indicate that the single-gene duplication of Cstb is insufficient to elicit a disease-modifying phenotype in the dupCstb x tgAPP mice, underscoring the complexity of the genetic basis of AD-DS and the importance of multiple gene interactions in disease.

neuroscience

Genetic dissection of Down syndrome-associated alterations in APP/amyloid-β biology using mouse models

Individuals who have Down syndrome (caused by trisomy of chromosome 21), have a greatly elevated risk of early-onset Alzheimers disease, in which amyloid-{beta} accumulates in the brain. Amyloid-{beta} is a product of the chromosome 21 gene APP (amyloid precursor protein) and the extra copy or dose of APP is thought to be the cause of this early-onset Alzheimers disease. However, other chromosome 21 genes likely modulate disease when in three-copies in people with Down syndrome. Here we show that an extra copy of chromosome 21 genes, other than APP, influences APP/A{beta} biology. We crossed Down syndrome mouse models with partial trisomies, to an APP transgenic model and found that extra copies of subgroups of chromosome 21 gene(s) modulate amyloid-{beta} aggregation and APP transgene-associated mortality, independently of changing amyloid precursor protein abundance. Thus, genes on chromosome 21, other than APP, likely modulate Alzheimers disease in people who have Down syndrome.

neuroscience