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The Soft Agar Colony Formation Assay
Published on: October 27, 2014
FBXW7/hCDC4 is a general tumor suppressor in human cancer
Shahab Akhoondi1, Dahui Sun, Natalie von der Lehr
1Cancer Center Karolinska, Karolinska Hospital, Stockholm, Sweden.
Abstract:
The ubiquitin-proteasome system is a major regulatory pathway of protein degradation and plays an important role in cellular division. Fbxw7 (or hCdc4), a member of the F-box family of proteins, which are substrate recognition components of the multisubunit ubiquitin ligase SCF (Skp1-Cdc53/Cullin-F-box-protein), has been shown to mediate the ubiquitin-dependent proteolysis of several oncoproteins including cyclin E1, c-Myc, c-Jun, and Notch. The oncogenic potential of Fbxw7 substrates, frequent allelic loss in human cancers, and demonstration that mutation of FBXW7 cooperates with p53 in mouse tumorigenesis have suggested that Fbxw7 could function as a tumor suppressor in human cancer. Here, we carry out an extensive genetic screen of primary tumors to evaluate the role of FBXW7 as a tumor suppressor in human tumorigenesis. Our results indicate that FBXW7 is inactivated by mutation in diverse human cancer types with an overall mutation frequency of approximately 6%. The highest mutation frequencies were found in tumors of the bile duct (cholangiocarcinomas, 35%), blood (T-cell acute lymphocytic leukemia, 31%), endometrium (9%), colon (9%), and stomach (6%). Approximately 43% of all mutations occur at two mutational "hotspots," which alter Arg residues (Arg465 and Arg479) that are critical for substrate recognition. Furthermore, we show that Fbxw7Arg465 hotspot mutant can abrogate wild-type Fbxw7 function through a dominant negative mechanism. Our study is the first comprehensive screen of FBXW7 mutations in various human malignancies and shows that FBXW7 is a general tumor suppressor in human cancer.
Insights
The Fbxw7 protein acts as a tumor suppressor, preventing cancer by degrading oncoproteins. Mutations in FBXW7 inactivate this function, leading to various human cancers, particularly bile duct and blood cancers.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- The ubiquitin-proteasome system regulates protein degradation, crucial for cellular division.
- Fbxw7 (hCdc4) targets oncoproteins like cyclin E1, c-Myc, c-Jun, and Notch for degradation.
- Evidence suggests Fbxw7 functions as a tumor suppressor due to substrate oncogenicity and mutation data.
Purpose of the Study:
- To comprehensively screen primary tumors for FBXW7 mutations.
- To evaluate the role of FBXW7 as a tumor suppressor in human tumorigenesis.
Main Methods:
- Extensive genetic screening of primary human tumors.
- Mutation frequency analysis across diverse cancer types.
- Identification of mutation hotspots and functional analysis of mutant Fbxw7.
Main Results:
- FBXW7 mutations were found in approximately 6% of diverse human cancers.
- Highest mutation frequencies observed in cholangiocarcinomas (35%) and T-cell acute lymphocytic leukemia (31%).
- Mutations frequently occurred at Arg465 and Arg479 hotspots, with Arg465 exhibiting dominant-negative effects.
Conclusions:
- FBXW7 is a general tumor suppressor in human cancer.
- FBXW7 inactivation through mutation contributes to tumorigenesis across multiple cancer types.
- Specific mutation hotspots highlight critical regions for Fbxw7 function.
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