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Biochemical evidence for ubiquitin ligase activity of the Arabidopsis COP1 interacting protein 8 (CIP8)

Biochemical evidence for ubiquitin ligase activity of the Arabidopsis COP1 interacting protein 8 (CIP8)
Biochemical evidence for ubiquitin ligase activity of the Arabidopsis COP1 interacting protein 8 (CIP8)
Arabidopsis COP1 is a negative regulator of photomorphogenesis, which targets HY5, a positive regulator of photomorphogenesis, for degradation via the proteasome pathway in the absence of light. COP1 and its interactive partner CIP8 both possess RING finger motifs, characteristic of some E3 ubiquitin ligases. Here we show that CIP8 promotes ubiquitin attachment to HY5 in E2-dependent fashion in vitro. CIP8 exhibits a strong interaction with the E2 enzyme AtUBC8 through its N-terminal domain. Phosphorylation of HY5 by casein kinase II requires the beta subunit 2, but does not affect HY5?s susceptibility to ubiquitination. The RING domain of CIP8 is required but is not sufficient for ubiquitin ligase activity. Although the RING domain of CIP8 interacts with the RING domain of COP1, addition of recombinant COP1 fails to affect CIP8?s ubiquitin ligase activity towards HY5 in vitro. However, recombinant COP1 can pull-down native CIP8 from the extract of dark-grown seedlings, but not from the extract of light-grown seedlings in a column-binding assay, implying a requirement for light-regulated modification in vivo. Our data suggest that CIP8 can form a minimal ubiquitin ligase in co-operation with the E2 enzyme AtUBC8. It is possible that the AtUBC8-CIP8 module might interact with COP1 in vivo, thereby participating in proteasome-mediated degradation of HY5
0960-7412
385-394
Hardtke, Christian S.
07e2ce6b-5997-4b85-858a-5c6d422d8950
Okamoto, Haruko
cea35380-7618-44c8-a268-47b0198cc7f9
Stoop-Myer, Chatanika
bfa90af7-66a2-47e6-97e3-8286096e5cda
Deng, Xing Wang
4e1d848e-08c4-43d2-8a79-c42b062b742f
Hardtke, Christian S.
07e2ce6b-5997-4b85-858a-5c6d422d8950
Okamoto, Haruko
cea35380-7618-44c8-a268-47b0198cc7f9
Stoop-Myer, Chatanika
bfa90af7-66a2-47e6-97e3-8286096e5cda
Deng, Xing Wang
4e1d848e-08c4-43d2-8a79-c42b062b742f

Hardtke, Christian S., Okamoto, Haruko, Stoop-Myer, Chatanika and Deng, Xing Wang (2002) Biochemical evidence for ubiquitin ligase activity of the Arabidopsis COP1 interacting protein 8 (CIP8). The Plant Journal, 30 (4), 385-394. (doi:10.1046/j.1365-313X.2002.01298.x). (PMID:12028569)

Record type: Article

Abstract

Arabidopsis COP1 is a negative regulator of photomorphogenesis, which targets HY5, a positive regulator of photomorphogenesis, for degradation via the proteasome pathway in the absence of light. COP1 and its interactive partner CIP8 both possess RING finger motifs, characteristic of some E3 ubiquitin ligases. Here we show that CIP8 promotes ubiquitin attachment to HY5 in E2-dependent fashion in vitro. CIP8 exhibits a strong interaction with the E2 enzyme AtUBC8 through its N-terminal domain. Phosphorylation of HY5 by casein kinase II requires the beta subunit 2, but does not affect HY5?s susceptibility to ubiquitination. The RING domain of CIP8 is required but is not sufficient for ubiquitin ligase activity. Although the RING domain of CIP8 interacts with the RING domain of COP1, addition of recombinant COP1 fails to affect CIP8?s ubiquitin ligase activity towards HY5 in vitro. However, recombinant COP1 can pull-down native CIP8 from the extract of dark-grown seedlings, but not from the extract of light-grown seedlings in a column-binding assay, implying a requirement for light-regulated modification in vivo. Our data suggest that CIP8 can form a minimal ubiquitin ligase in co-operation with the E2 enzyme AtUBC8. It is possible that the AtUBC8-CIP8 module might interact with COP1 in vivo, thereby participating in proteasome-mediated degradation of HY5

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Published date: 2002
Organisations: Centre for Biological Sciences

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Local EPrints ID: 362161
URI: http://eprints.soton.ac.uk/id/eprint/362161
ISSN: 0960-7412
PURE UUID: a11845ad-1ea4-40ce-a283-be4879376577

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Date deposited: 14 Mar 2014 09:34
Last modified: 14 Mar 2024 16:01

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Contributors

Author: Christian S. Hardtke
Author: Haruko Okamoto
Author: Chatanika Stoop-Myer
Author: Xing Wang Deng

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