Mechanisms of Copper Incorporation into Human Ceruloplasmin
Механизмы включения меди в церулоплазмин человека
2002-11-01
SCID: 54.1/m5ry648s
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aceruloplasminemiacopper incorporationcopper-binding siteshuman ceruloplasminmulticopper oxidase
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Abstract (AI)
Ceruloplasmin is a multicopper oxidase essential for normal iron homeostasis. To elucidate the mechanisms of copper incorporation into this protein, holoceruloplasmin biosynthesis was examined by immunoblot analysis and (64)Cu metabolic labeling of Chinese hamster ovary cells transfected with cDNAs encoding wild-type or mutant ceruloplasmin. This analysis reveals that the incorporation of copper into newly synthesized apoceruloplasmin in vivo results in a detectable conformational change in the protein. Strikingly, despite the unique functional role of each copper site within ceruloplasmin, metabolic studies indicate that achieving this final conformation-driven state requires the occupation of all six copper-binding sites with no apparent hierarchy for copper incorporation at any given site. Consistent with these findings a missense mutation (G631R), resulting in aceruloplasminemia and predicted to alter the interactions at a single type I copper-binding site, results in the synthesis and secretion only of apoceruloplasmin. Analysis of copper incorporation into apoceruloplasmin in vitro reveals that this process is cooperative and that the failure of copper incorporation into copper-binding site mutants observed in vivo is intrinsic to the mutant proteins. These findings reveal a precise and sensitive mechanism for the formation of holoceruloplasmin under the limiting conditions of copper availability within the cell that may be generally applicable to the biosynthesis of cuproproteins within the secretory pathway.
Key Findings
1
All six copper-binding sites must be occupied to achieve the final ceruloplasmin conformation, with no apparent hierarchy among sites.
2
Copper incorporation into apoceruloplasmin is cooperative, and incorporation defects in copper-site mutants are intrinsic to the mutant proteins.
3
Copper incorporation into newly synthesized apoceruloplasmin induces a detectable conformational change required for holoceruloplasmin formation.
4
The aceruloplasmin-causing G631R mutation leads exclusively to synthesis and secretion of apoceruloplasmin despite altering only one type I copper-binding site.
5
The identified mechanism enables precise holoceruloplasmin formation under limited intracellular copper and may apply broadly to secretory-pathway cuproproteins.
Research Object
Copper incorporation and holoceruloplasmin biosynthesis in human ceruloplasmin
Research Subject
The cooperative, non-hierarchical occupation of all six copper-binding sites and the resulting conformational maturation of ceruloplasmin, including the effects of copper-site mutations
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2002-11-01
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