Search Results - "Harvey, Andrew J."

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    Enzymatic characterization of ancestral/group‐IV clade xyloglucan endotransglycosylase/hydrolase enzymes reveals broad substrate specificities by Seven, Merve, Derman, Ü. Cem, Harvey, Andrew J.

    “…SUMMARY Xyloglucan endotransglycosylase/hydrolase (XTH) enzymes play important roles in cell wall remodelling. Although previous studies have shown a pathway…”
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    Genetics and Transcriptional Profiles of the Cellulose Synthase-Like HvCslF Gene Family in Barley by Burton, Rachel A, Jobling, Stephen A, Harvey, Andrew J, Shirley, Neil J, Mather, Diane E, Bacic, Antony, Fincher, Geoffrey B

    Published in Plant physiology (Bethesda) (01-04-2008)
    “…Cellulose synthase-like CslF genes have been implicated in the biosynthesis of (1,3;1,4)-β-D-glucans, which are major cell wall constituents in grasses and…”
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    The CesA Gene Family of Barley. Quantitative Analysis of Transcripts Reveals Two Groups of Co-Expressed Genes by Burton, Rachel A., Shirley, Neil J., Brendon J. King, Harvey, Andrew J., Fincher, Geoffrey B.

    Published in Plant physiology (Bethesda) (01-01-2004)
    “…Sequence data from cDNA and genomic clones, coupled with analyses of expressed sequence tag databases, indicate that the CesA (cellulose synthase) gene family…”
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    Substrate specificity and catalytic mechanism of a xyloglucan xyloglucosyl transferase HvXET6 from barley (Hordeum vulgare L.) by Hrmova, Maria, Farkas, Vladimir, Harvey, Andrew J, Lahnstein, Jelle, Wischmann, Bente, Kaewthai, Nomchit, Ezcurra, Inés, Teeri, Tuula T, Fincher, Geoffrey B

    Published in The FEBS journal (01-01-2009)
    “…A family 16 glycoside hydrolase, xyloglucan xyloglucosyl transferase (EC 2.4.1.207), also known as xyloglucan endotransglycosylase (XET), and designated…”
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    Molecular modeling of family GH16 glycoside hydrolases: Potential roles for xyloglucan transglucosylases/hydrolases in cell wall modification in the poaceae by Strohmeier, Marco, Hrmova, Maria, Fischer, Markus, Harvey, Andrew J., Fincher, Geoffrey B., Pleiss, Jürgen

    Published in Protein science (01-12-2004)
    “…Family GH16 glycoside hydrolases can be assigned to five subgroups according to their substrate specificities, including xyloglucan…”
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    Synthesis and biological evaluation of chalcones as inhibitors of the voltage-gated potassium channel Kv1.3 by Cianci, Julia, Baell, Jonathan B., Flynn, Bernard L., Gable, Robert, W., Mould, Jorgen A., Paul, Dharam, Harvey, Andrew J.

    Published in Bioorganic & medicinal chemistry (15-03-2008)
    “…Chalcone derivatives of the natural product khellinone were synthesised and screened for bioactivity against the voltage-gated potassium channel Kv1.3. X-ray…”
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    A New Class of Blockers of the Voltage-Gated Potassium Channel Kv1.3 via Modification of the 4- or 7-Position of Khellinone by Harvey, Andrew J, Baell, Jonathan B, Toovey, Nathan, Homerick, Daniel, Wulff, Heike

    Published in Journal of medicinal chemistry (23-02-2006)
    “…The voltage-gated potassium channel Kv1.3 constitutes an attractive target for the selective suppression of effector memory T cells in autoimmune diseases. We…”
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    Evolutionary Dynamics of the Cellulose Synthase Gene Superfamily in Grasses by Schwerdt, Julian G., MacKenzie, Katrin, Wright, Frank, Oehme, Daniel, Wagner, John M., Harvey, Andrew J., Shirley, Neil J., Burton, Rachel A., Schreiber, Miriam, Halpin, Claire, Zimmer, Jochen, Marshall, David F., Waugh, Robbie, Fincher, Geoffrey B.

    Published in Plant physiology (Bethesda) (01-07-2015)
    “…Phylogenetic analyses of cellulose synthase (CesA) and cellulose synthase-like (Csl) families from the cellulose synthase gene superfamily were used to…”
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    Cellulose Synthase-like CslF Genes Mediate the Synthesis of Cell Wall (1,3;1,4)-β-D-Glucans by Burton, Rachel A., Wilson, Sarah M., Hrmova, Maria, Harvey, Andrew J., Shirley, Neil J., Medhurst, Anne, Stone, Bruce A., Newbigin, Edward J., Bacic, Antony, Fincher, Geoffrey B.

    “…A characteristic feature of grasses and commercially important cereals is the presence of (1,3;1,4)-β-D-glucans in their cell walls. We have used comparative…”
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    Rice family GH1 glycoside hydrolases with β- d-glucosidase and β- d-mannosidase activities by Kuntothom, Teerachai, Luang, Sukanya, Harvey, Andrew J., Fincher, Geoffrey B., Opassiri, Rodjana, Hrmova, Maria, Ketudat Cairns, James R.

    Published in Archives of biochemistry and biophysics (01-11-2009)
    “…Plant β- d-mannosidases and a rice β- d-glucosidase, Os3BGlu7, with weak β- d-mannosidase activity, cluster together in phylogenetic analysis. To investigate…”
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    Azobenzene-Containing, Peptidyl α-Ketoesters as Photobiological Switches of α-Chymotrypsin by Harvey, Andrew J, Abell, Andrew D

    Published in Tetrahedron (08-12-2000)
    “…Three photoswitchable, peptidomimetic inhibitors of α-chymotrypsin have been synthesised. The compounds comprise an azobenzene, an α-ketoester and…”
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    Khellinone Derivatives as Blockers of the Voltage-Gated Potassium Channel Kv1.3:  Synthesis and Immunosuppressive Activity by Baell, Jonathan B, Gable, Robert W, Harvey, Andrew J, Toovey, Nathan, Herzog, Tanja, Hänsel, Wolfram, Wulff, Heike

    Published in Journal of medicinal chemistry (22-04-2004)
    “…The voltage-gated potassium channel Kv1.3 constitutes a promising new target for the treatment of T-cell-mediated autoimmune diseases such as multiple…”
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    Comparative modeling of the three-dimensional structures of family 3 glycoside hydrolases by Harvey, Andrew J., Hrmova, Maria, De Gori, Ross, Varghese, Joseph N., Fincher, Geoffrey B.

    “…There are approximately 100 known members of the family 3 group of glycoside hydrolases, most of which are classified as β‐glucosidases and originate from…”
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    Biochemical evidence linking a putative callose synthase gene with (1 --> 3)-beta-D-glucan biosynthesis in barley by Li, Jing, Burton, Rachel A, Harvey, Andrew J, Hrmova, Maria, Wardak, Ahmad Z, Stone, Bruce A, Fincher, Geoffrey B

    Published in Plant molecular biology (01-09-2003)
    “…A putative barley (1 --> 3)-beta-D-glucan synthase cDNA of 6.1 kb, which is homologous to the yeast FKS gene, was assembled from DNA fragments obtained through…”
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