Synthesis and conformational analysis of poly(phenylacetylene)s with serinol-tethered carbohydrate appendages
-
Add time:08/25/2019 Source:sciencedirect.com
We synthesized phenylacetylenes containing β-lactoside, β-cellobioside, or β-maltoside, and polymerized them to produce the corresponding poly (phenylacetylene)s. In these poly (phenylacetylene)s, the pendent carbohydrates were tethered to the mainchains by serinol spacers. Because similar glycosyl serinol units are found in the natural glycosphingolipids in cell membranes, the densely packed carbohydrate clusters along the poly (phenylacetylene) mainchains act as molecular mimics of cell surface glycoclusters. We analyzed the conformation of the glycosylated poly (phenylacetylene)s using circular dichroism spectroscopy, and found that the spatial carbohydrate packing within the glycoclusters changed on the addition of salts.
We also recommend Trading Suppliers and Manufacturers of 6-O-ALPHA-MALTOSYL-BETA-CYCLODEXTRIN HYDRATE (cas 104723-60-6). Pls Click Website Link as below: cas 104723-60-6 suppliers
Prev:GH57 amylopullulanase from Desulfurococcus amylolyticus JCM 9188 can make highly branched cyclodextrin via its transglycosylation activity
Next:Physicochemical and biological properties of 2-O-α-d-galactosyl-cyclomaltohexaose (α-cyclodexterin) and -cyclomaltoheptaose (β-cyclodextrin)) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Characterization of a novel extracellular α-amylase from Ruminococcus bromii ATCC 27255 with neopullulanase-like activity08/29/2019
- Oligosaccharide recognition and binding to the carbohydrate binding module of AMP-activated protein kinase08/28/2019
- Physicochemical and biological properties of 61,63,65-tri-O-α-maltosyl-cyclomaltoheptaose (61,63,65-tri-O-α-maltosyl-β-cyclodextrin)08/27/2019
- Physicochemical and biological properties of 2-O-α-d-galactosyl-cyclomaltohexaose (α-cyclodexterin) and -cyclomaltoheptaose (β-cyclodextrin)08/26/2019
- GH57 amylopullulanase from Desulfurococcus amylolyticus JCM 9188 can make highly branched cyclodextrin via its transglycosylation activity08/24/2019
- Effect of 6-O-α-maltosyl-β cyclodextrin and its cholesterol inclusion complex on cellular cholesterol levels and ABCA1 and ABCG1 expression in mouse mastocytoma P-815 cells08/23/2019
- Role of 6-O-α-maltosyl-β-cyclodextrin in lysosomal cholesterol deprivation in Npc1-deficient Chinese hamster ovary cells08/22/2019


