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Glycosylation Of Skeletal Calsequestrin: Implications For Its Function.

J Biol Chem.. 2012-01;  287(5):3042-50
Sanchez EJ, Lewis KM, Munske GR, Nissen MS, Kang C. School of Molecular Biosciences, Washington State University, Pullman, Washington 99164-4660, USA.
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Abstract

Calsequestrin (CASQ) serves as a major Ca(2+) storage/buffer protein in the sarcoplasmic reticulum (SR). When purified from skeletal muscle, CASQ1 is obtained in its glycosylated form. Here, we have confirmed the specific site and degree of glycosylation of native rabbit CASQ1 and have investigated its effect on critical properties of CASQ by comparison with the non-glycosylated recombinant form. Based on our comparative approach utilizing crystal structures, Ca(2+) binding capacities, analytical ultracentrifugation, and light-scattering profiles of the native and recombinant rabbit CASQ1, we propose a novel and dynamic role for glycosylation in CASQ. CASQ undergoes a unique degree of mannose trimming as it is ... More

Keywords

C. elegans;HemeIron metabolism;Transporters;Yeast metabolism;Nematode;Tetrapyrrole