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      Crystal structure of human chorionic gonadotropin.

      Nature
      Amino Acid Sequence, Carbohydrate Conformation, Chorionic Gonadotropin, chemistry, metabolism, Computer Graphics, Crystallography, X-Ray, Cystine, Disulfides, Glycoproteins, Growth Substances, Hormones, Humans, Models, Molecular, Molecular Sequence Data, Protein Conformation, Protein Folding, Receptors, LH

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          Abstract

          The three-dimensional structure of human chorionic gonadotropin shows that each of its two different subunits has a similar topology, with three disulphide bonds forming a cystine knot. This same folding motif is found in some protein growth factors. The heterodimer is stabilized by a segment of the beta-subunit which wraps around the alpha-subunit and is covalently linked like a seat belt by the disulphide Cys 26-Cys 110. This extraordinary feature appears to be essential not only for the association of these heterodimers but also for receptor binding by the glycoprotein hormones.

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