The LIM/Double Zinc-Finger Motif Functions as a Protein Dimerization Domain

Protein-protein interactions resulting in dimerization and heterodimerization are of central importance in the control of gene expression and cell function. Proteins that share the 52-residue LIM/double zinc-finger domain are involved in a wide range of developmental and cellular controls. Some of t...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 1994-10, Vol.91 (22), p.10655-10659
Hauptverfasser: Feuerstein, Ron, Wang, Xinkang, Song, DeCheng, Cooke, Nancy E., Liebhaber, Stephen A.
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Sprache:eng
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Zusammenfassung:Protein-protein interactions resulting in dimerization and heterodimerization are of central importance in the control of gene expression and cell function. Proteins that share the 52-residue LIM/double zinc-finger domain are involved in a wide range of developmental and cellular controls. Some of these functions have been hypothesized to involve protein dimerization. In the present report we demonstrate, using both in vitro and cell-based studies, that a representative LIM protein, human cysteine-rich protein (hCRP), can efficiently homodimerize. The dimerization ability of hCRP is mapped to the LIM domains, can be transferred to an unrelated protein by fusion of a single minimal LIM/double zinc-finger segment, occurs in the absence as well as the presence of DNA, and appears to depend on coordination of two zinc atoms in the finger doublet. These observations support a specific role for protein dimerization in the function of proteins containing the LIM/double zinc-finger domain and expand the general spectrum of potential interactions mediated by zinc-finger motifs.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.91.22.10655