• Log in with Facebook Log in with Twitter Log In with Google      Sign In    
  • Create Account
  LongeCity
              Advocacy & Research for Unlimited Lifespans

Photo

SORLA Upregulation as a Possible Means to Treat Tauopathies


  • Please log in to reply
No replies to this topic

#1 reason

  • Guardian Reason
  • 1,101 posts
  • 436
  • Location:US

Posted Today, 10:22 AM


A number of neurodegenerative conditions, including Alzheimer's disease, are characterized by a pervasive chemical alteration of tau protein that causes tau to cease its normal function and aggregate into structures known as neurofibrillary tangles. This is harmful to neurons and their normal, necessary function. The feedback loop between maladaptive inflammation and tau aggregation drives the end stages of Alzheimer's disease, causing widespread cell death in the brain and the eventual death of the patient. Researchers here identify a compensatory maintenance process in neurons that can be made to operate more efficiently by increasing the expression of a protein called SORLA. In mice engineered to develop tau pathology, greater SORLA expression slows the progression of neurodegeneration.

Recent genome-wide association studies have linked multiple gene variants with altered Alzheimer's disease (AD) risk, including the class I membrane receptor endosomal trafficking factor, SORLA, or "Sortilin-related receptor containing LDLR class A repeats" (encoded by the SORL1 gene, also known as LR11). SORLA is a component of the retromer endosomal trafficking complex. Expression of retromer components have been shown to be down-regulated in AD and reduced SORLA expression was also linked to AD.

A role for SORLA in reducing amyloid-β (Aβ) levels has been well established; however, relatively little is known with respect to whether and how SORLA can potentially affect tau pathology in vivo. Here, we show that SORLA up-regulation can attenuate pathological effects in aged PS19 tauopathy mouse brain, including tau phosphorylation and seeding, ventricle dilation, synapse loss, long-term potentiation (LTP) impairment, and glial hyperactivation. These results indicate that SORLA confers neuroprotection against tau toxicity in the PS19 mouse brain.

Link: https://doi.org/10.1126/sciadv.aed6825


View the full article at FightAging




3 user(s) are reading this topic

0 members, 3 guests, 0 anonymous users