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PubMed · 10508699

APC: the plot thickens.

Abstract

Adenomatous polyposis coli (APC) is an important tumour suppressor in the human colon. It is conserved between human and flies, and promotes, together with Axin and glycogen synthase kinase 3 (GSK3), the degradation of the Wnt-signalling effector beta-catenin. Recent experiments have shaped our understanding of how Axin and GSK3 function but the role of APC in this process remains elusive.

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BibTeXRIS

M Bienz. 1999. APC: the plot thickens.. https://doi.org/10.1016/s0959-437x(99)00016-7

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Different combinations of biallelic APC mutation confer different growth advantages in colorectal tumours.

New facets to Knudson's [corrected] "two-hit" hypothesis have been proposed recently in relation to adenomatous polyposis coli (APC): protein inactivation may be selected weakly, and the two hits may be interdependent. We reviewed published data on 165 sporadic and 102 familial adenomatous polyposis-associated colorectal tumors with two characterized mutations. Using a Poisson model, we redefined the mutation cluster region (MCR) to residues 1281-1556 and confirmed that the locations of pairs of APC mutations are interdependent (P < 0.0001). A mathematical model, based on the data for sporadic tumors, implied different growth advantages for different combinations of APC mutations: genotype I/I (I: mutation inside MCR) was 3.9 times more likely to be selected than IO or IL (O: mutation outside MCR, L: allelic loss), which were 27.8 times more likely to be selected than OO or OL.

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