| Literature DB >> 25910586 |
Nozomi Tsutsui1, Genzoh Tanabe1, Nao Morita1, Yoshitomo Okayama1, Ayako Kita2, Reiko Sugiura3, Osamu Muraoka4.
Abstract
Five homologs of a novel glycolipid acremomannolipin A (1a), the potential Ca(2+) signal modulator isolated from Acremonium strictum, bearing alditols of different length (1g-1k) were synthesized by a stereoselective β-mannosylation of appropriately protected mannosyl sulfoxide (2) with five alditols (1g: C2, 1h: C3, 1i: C4, 1j: C5 and 1k: C7 units), and their potential in modulating Ca(2+) signaling were evaluated. Homologs with alditols of more than 4 carbons (1i, 1j and 1k) were equally or more potent than the parent compound (1a) regardless of the length of the alditol chain. Whereas activities of two homologs with shorter chains (1g and 1h) decreased to a considerable extent. The results indicated that the length of the alditol side chain was a crucial determinant for the potent calcium signal modulating activity.Entities:
Keywords: Acremomannolipin A; Acremonium strictum; Calcium signal modulator; Glycolipid; SAR study
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Year: 2015 PMID: 25910586 DOI: 10.1016/j.bmc.2015.03.079
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641