Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10765360 | Biochemical and Biophysical Research Communications | 2010 | 6 Pages |
Abstract
Central nervous system myelin is a dynamic entity arising from membrane processes extended from oligodendrocytes, which form a tightly-wrapped multilamellar structure around neurons. In mature myelin, the predominant splice isoform of classic MBP is 18.5Â kDa. In solution, MBP is an extended, intrinsically disordered protein with a large effective protein surface for myriad interactions, and possesses transient and/or induced ordered secondary structure elements for molecular association or recognition. Here, we show by nanopore analysis that the divalent cations copper and zinc induce a compaction of the extended protein in vitro, suggestive of a tertiary conformation that may reflect its arrangement in myelin.
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Authors
Christian Baran, Graham S.T. Smith, Vladimir V. Bamm, George Harauz, Jeremy S. Lee,