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C Haass

Publications and source records attributed to C Haass.

110 records · Page 7Linked to original sources

Production of amyloid-beta-peptide by cultured cells: no evidence for internal initiation of translation at Met596.

It has been suggested that the A beta fragment of the amyloid precursor protein in Alzheimer's disease arises from internal translation initiation at Met596 (1). Here we use the recently described in vitro model of A beta production and secretion (2) to examine this hypothesis. We show that A beta is no longer detectable when the beta APP reading frame is destroyed by introduction of frame shift mutations that leave the A beta coding region intact. This result strongly suggests that internal initiation at Met596 does not contribute significantly to the amount of A beta observed.

Amino Acid Sequence↗

UV light-induced autofluorescence of full-length Abeta-protein deposits in the human brain.

The formation of amyloid plaques is a hallmark of Alzheimer's disease (AD). Amyloid plaques and vascular amyloid deposits in cerebral amyloid angiopathy (CAA) consist of the beta-amyloid protein (Abeta) in association with other proteins. These Abeta-deposits can be visualized by thioflavin S, Congo red staining, silver staining methods and immunohistochemistry. Senile plaques also have been shown to exhibit blue autofluorescence. Here we report that UV light-induced autofluorescence is restricted to full-length Abeta-containing amyloid plaques and is also seen in blood vessels affected by CAA. Different types of samples from AD and control cortices were examined: native samples, formalin-fixed paraffin and polyethylene glycol-embedded tissue sections. These samples were viewed with a fluorescence microscope under UV light excitation (360 - 370 nm). By emitting blue fluorescence (>420 nm), amyloid plaques and blood vessels affected by CAA were detected in AD and CAA samples. Combination with immunofluorescence against anti-Abeta1-42, anti-Abeta17-24, and anti-Abeta8-17 demonstrated co-localization of the autofluorescent deposits with full-length Abeta containing Abeta-deposits. N-terminal truncated Abeta-deposits, such as the fleecy amyloid, do not exhibit autofluorescence. In doing so, Abeta-autofluorescence is a suitable method for screening native tissue samples for full-length Abeta-deposits. In contradistinction to conventional and immunohistochemical procedures, detection of plaques and CAA by autofluorescence enables the recognition of full-length Abeta-deposits in the human brain without any chemical interaction whatsoever on the part of Abeta.

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