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Published on: April 4, 2018
Latent NOTCH3 epitopes unmasked in CADASIL and regulated by protein redox state
Xiaojie Zhang1, Soo Jung Lee1, Kelly Z Young1
1Departments of Neurology, University of Michigan, Ann Arbor, MI 48109-5622, USA.
Insights
Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) involves structural NOTCH3 protein changes. Researchers found latent N-terminal NOTCH3 epitopes in CADASIL arteries, indicating the first in vivo evidence of these alterations.
Area of Science:
- Neurology
- Molecular Biology
- Genetics
Background:
- Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a genetic disorder linked to over 100 NOTCH3 mutations.
- Mutations often result in NOTCH3 proteins with an odd number of cysteines, suggesting structural alterations as the primary molecular defect.
Purpose of the Study:
- To investigate for evidence of structurally altered NOTCH3 protein in CADASIL patient tissue.
- To identify the biochemical nature of NOTCH3 epitopes and their potential alterations in CADASIL.
Main Methods:
- Generated antibodies against N-terminal NOTCH3 sequences.
- Performed immunohistochemical analysis on post-mortem CADASIL and control brains.
- Probed purified NOTCH3-Fc fusion proteins with antibodies after various chemical treatments (acid, urea, detergents, reductants).
Main Results:
- All antibodies strongly stained arteries in 8/8 CADASIL brains, particularly in degenerating media and sclerotic vessels.
- No reactivity was observed in control brain vessels, cultured cells, or untreated purified NOTCH3-Fc protein.
- Novel N-terminal NOTCH3 epitopes were recognized by antibodies only after treatment of purified protein with specific reductants (DTT, beta-mercaptoethanol, TCEP).
Conclusions:
- CADASIL arteries exhibit latent N-terminal NOTCH3 epitopes.
- This finding provides the first in vivo evidence of NOTCH3 structural alterations in CADASIL.
- The results suggest that altered NOTCH3 protein structure is a key feature of CADASIL pathogenesis.
Abstract:
Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy CADASIL is caused by more than a hundred NOTCH3 mutations. Virtually all encoded mutant proteins contain an odd number of cysteines. As such, structural changes in NOTCH3 may be the primary molecular abnormality in CADASIL. Thus, we sought evidence for structurally altered NOTCH3 protein in CADASIL tissue. Four antibodies were raised in rabbits against two non-overlapping N-terminal NOTCH3 sequences. These reagents were used in immunohistochemical experiments to detect epitopes in post-mortem CADASIL brains (n=8), control brains, and cells overexpressing NOTCH3. To determine the biochemical nature of NOTCH3 epitopes, we used these antibodies to probe pure NOTCH3-Fc fusion proteins treated with acid, urea, guanidinium, ionic detergents, acrylamide, and thiol- and phosphorus-based reductants. All antibodies avidly stained arteries in 8 of 8 CADASIL brain samples. The most prominent staining was in degenerating media of leptomeningeal arteries and sclerotic penetrating vessels. Normal appearing vessels from control brains were not reactive. Antibodies did not react with cultured cells overexpressing NOTCH3 or with purified NOTCH3-Fc protein. Furthermore, treatment of pure protein with acid, chaotropic denaturants, alkylators, and detergents failed to unmask N-terminal NOTCH3 epitopes. Antibodies, however, recognized novel N-terminal epitopes in purified NOTCH3-Fc protein treated with three different reductants (DTT, beta-mercaptoethanol, and TCEP). We conclude that CADASIL arteries feature latent N-terminal NOTCH3 epitopes, suggesting the first evidence in vivo of NOTCH3 structural alterations.
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