Ross T.A. MacGillivray
|University of British Columbia, Vancouver, Vancouver, BC, Canada|
Area:Molecular Biology, Biomedical Engineering
Google:"Ross Thomas Alexander MacGillivray"
Macgillivray, Ross Thomas,
Studies Of The Structure And Evolution Of Serum Transferrin (1977). Dissertations from ProQuest. 891.
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|Bauer N, Smith VC, MacGillivray RT, et al. (2015) Complexation of Cm(III) with the recombinant N-lobe of human serum transferrin studied by time-resolved laser fluorescence spectroscopy (TRLFS). Dalton Transactions (Cambridge, England : 2003). 44: 1850-7|
|Hewitt J, Chou EM, Brown LA, et al. (2014) Molecular characterization of a 4,409,480 bp deletion of the human X chromosome in a patient with haemophilia B. Haemophilia : the Official Journal of the World Federation of Hemophilia. 20: e230-4|
|Lambert A, Wong AY, Kominami Y, et al. (2013) Microdeletion of exon 3 in the HBA2 gene associated with mild α-thalassemia trait. Hemoglobin. 37: 192-6|
|Curtis SB, Dunbar WS, MacGillivray RT. (2013) Bacteriophage-induced aggregation of oil sands tailings. Biotechnology and Bioengineering. 110: 803-11|
|Vanden Hoek AL, Talbot K, Carter IS, et al. (2012) Coagulation factor X Arg386 specifically affects activation by the intrinsic pathway: a novel patient mutation. Journal of Thrombosis and Haemostasis : Jth. 10: 2613-5|
|Grieco SH, Wong AY, Dunbar WS, et al. (2012) Optimization of fermentation parameters in phage production using response surface methodology. Journal of Industrial Microbiology & Biotechnology. 39: 1515-22|
|Steere AN, Chasteen ND, Miller BF, et al. (2012) Structure-based mutagenesis reveals critical residues in the transferrin receptor participating in the mechanism of pH-induced release of iron from human serum transferrin. Biochemistry. 51: 2113-21|
|Steere AN, Miller BF, Roberts SE, et al. (2012) Ionic residues of human serum transferrin affect binding to the transferrin receptor and iron release. Biochemistry. 51: 686-94|
|Bleackley MR, Young BP, Loewen CJ, et al. (2011) High density array screening to identify the genetic requirements for transition metal tolerance in Saccharomyces cerevisiae. Metallomics : Integrated Biometal Science. 3: 195-205|
|Talbot K, Song J, Hewitt J, et al. (2010) A novel compensating mechanism for homozygous coagulation factor V deficiency suggested by enhanced activated partial thromboplastin time after reconstitution with normal factor V. British Journal of Haematology. 151: 198-200|