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PMID: 16007132 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Puma(*)Mcl-1 interaction is not sufficient to prevent rapid degradation of Mcl-1.

Oncogene ·Vol. 24 ·No. 48 ·2005-11-03 ·Pages 7224-37

Mei Y, Du W, Yang Y, Wu M

Abstract

Although Puma (p53 upregulated modulator of apoptosis) was known as a principal mediator of cell death in response to diverse apoptotic signals, the molecular mechanism underlying its proapoptotic regulation remains largely uncharacterized. Here we reported that myeloid cell leukemia-1 (Mcl-1), an anti-apoptotic member of the Bcl-2 family with a rapid turnover rate, interacts with Puma. The Puma/Mcl-1 interaction was verified by both yeast two-hybrid assay and co-immuno-precipation studies. Their binding sites were mapped to BH3 (Bcl-2 homology) domain of Puma and BH1 domain of Mcl-1, respectively. Mcl-1 and Puma was shown to colocalize at the mitochondria by immunostaining. The level of Mcl-1 was increased when coexpressed with Puma, indicating Puma is able to stabilize Mcl-1. Puma binding to Mcl-1 via its BH3 domain is the prerequisite for this effect, which is further supported by the finding that Puma mutant lacking BH3 domain no longer promotes Mcl-1 protein stability. This Puma-enhanced Mcl-1 stabilization was validated in vivo under non-overexpression conditions. We also showed that BH1 domain is essential for Mcl-1 to inhibit Puma-induced apoptosis, since Mcl-1 mutant lacking BH1 domain completely abrogates its protective function. In addition, we concluded that binding of Puma to BH1 domain of Mcl-1 is necessary, but not sufficient to prevent rapid degradation of Mcl-1. In addition to PEST (proline, glutamic acid, serine, and threonine) and BH1 domain, some additional degradation signal is expected to reside in the C-terminal region of Mcl-1. In conclusion, our results provide the first evidence that the interaction between Mcl-1 and Puma may represent a novel mechanism by which Mcl-1 prevents apoptosis by increasing its stability through binding to Puma.

MeSH Terms
Amino Acid Motifs Amino Acid Sequence Apoptosis Apoptosis Regulatory Proteins/chemistry,genetics,metabolism Binding Sites Blotting, Western Caspase 9 Caspases/metabolism Cell Line Cytochrome c Group/metabolism Enzyme Activation Fluorescent Antibody Technique, Indirect Fluorescent Dyes Gene Deletion Green Fluorescent Proteins/metabolism Half-Life HeLa Cells Humans Immunohistochemistry Kinetics Microscopy, Fluorescence Mitochondria/metabolism Molecular Sequence Data Mutagenesis, Site-Directed Myeloid Cell Leukemia Sequence 1 Protein Neoplasm Proteins/chemistry,genetics,metabolism Organic Chemicals Precipitin Tests Protein Binding Protein Structure, Tertiary Proto-Oncogene Proteins/chemistry,genetics,metabolism Proto-Oncogene Proteins c-bcl-2/chemistry,metabolism Reproducibility of Results Rhodamines Two-Hybrid System Techniques
Chemicals
Apoptosis Regulatory Proteins BBC3 protein, human Cytochrome c Group Fluorescent Dyes Myeloid Cell Leukemia Sequence 1 Protein Neoplasm Proteins Organic Chemicals Proto-Oncogene Proteins Proto-Oncogene Proteins c-bcl-2 Rhodamines red dye CMXRos Green Fluorescent Proteins CASP9 protein, human Caspase 9 Caspases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Mei Yide
Hefei National Laboratory for Physical Sciences at Microscale and School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, People's Republic of China.
Du Wenjing
Yang Yonghui
Wu Mian
Article Info
Journal
Oncogene
Abbr.
Oncogene
ISSN
0950-9232
Published
2005-11-03
Pages
7224-37
Language
English
Region
England
NLM ID
8711562
Subset
IM
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