bioRxiv Science⌕ Search

Biology subjects

Mentrup, T.

Publications and source records attributed to Mentrup, T..

2 recordsLinked to original sources

Signal Peptide Peptidase-Like 2b affects APP cleavage and exhibits a biphasic Aβ-mediated expression in Alzheimer's disease.

Alzheimers disease (AD) is a multifactorial disorder driven by abnormal amyloid {beta}-peptide (A{beta}) levels. To identify new druggable pathways involved in the A{beta} cascade we here investigated the AD pathophysiological role of the presenilin-like intramembrane protease signal peptide peptidase-like 2b (SPPL2b). A{beta}42 induced a biphasic modulation of SPPL2b expression in human cell lines and ex vivo mouse brain slices. In addition, SPPL2b was elevated in AppNL-G-F knock-in AD mice as well as in human AD samples. Early high neuronal expression of SPPL2b was followed by a downregulation in late AD pathology in both AppNL-G-F mice and Braak stage V AD brains. Importantly, SPPL2b overexpression or its genetic deletion significantly increased or reduced APP cleavage and A{beta} production, respectively. Thus, our results strongly support the involvement of SPPL2b in AD pathology. The early A{beta}-induced SPPL2b upregulation may enhance A{beta} production in a vicious cycle further aggravating the A{beta} pathology suggesting SPPL2b as a potential anti-A{beta} drug target.

neuroscience↗

Intramembrane protease SPP defines a cholesterol-regulated switch of the mevalonate pathway

Intramembrane proteolysis regulates important processes such as signaling and transcriptional and posttranslational abundance control of proteins with key functions in metabolic pathways. This includes transcriptional control of mevalonate pathway genes, thereby ensuring balanced biosynthesis of cholesterol and other isoprenoids. Our work shows that, at high cholesterol levels, signal peptide peptidase (SPP) cleaves squalene synthase (SQS), an enzyme that defines the branching point for allocation of isoprenoids to the sterol and non-sterol arms of the mevalonate pathway. This intramembrane cleavage releases SQS from the membrane and targets it for proteasomal degradation. Regulation of this mechanism is achieved by the E3 ubiquitin ligase TRC8 that, in addition to ubiquitinating SQS in response to cholesterol levels, acts as an allosteric activator of SPP-catalyzed intramembrane cleavage of SQS. Cellular cholesterol levels increase in the absence of SPP activity. Hence, SPP-TRC8 mediated abundance control of SQS acts as a regulation step within the mevalonate pathway.

cell biology↗