Literature DB >> 24302565

Consequences of germline variation disrupting the constitutional translational initiation codon start sites of MLH1 and BRCA2: Use of potential alternative start sites and implications for predicting variant pathogenicity.

Michael T Parsons1, Phillip J Whiley1, Jonathan Beesley1, Mark Drost2, Niels de Wind2, Bryony A Thompson1,3, Louise Marquart4, John L Hopper5,6, Mark A Jenkins5, Melissa A Brown7, Kathy Tucker8, Linda Warwick9, Daniel D Buchanan4, Amanda B Spurdle1.   

Abstract

Variants that disrupt the translation initiation sequences in cancer predisposition genes are generally assumed to be deleterious. However, few studies have validated these assumptions with functional and clinical data. Two cancer syndrome gene variants likely to affect native translation initiation were identified by clinical genetic testing: MLH1:c.1A>G p.(Met1?) and BRCA2:c.67+3A>G. In vitro GFP-reporter assays were conducted to assess the consequences of translation initiation disruption on alternative downstream initiation codon usage. Analysis of MLH1:c.1A>G p.(Met1?) showed that translation was mostly initiated at an in-frame position 103 nucleotides downstream, but also at two ATG sequences downstream. The protein product encoded by the in-frame transcript initiating from position c.103 showed loss of in vitro mismatch repair activity comparable to known pathogenic mutations. BRCA2:c.67+3A>G was shown by mRNA analysis to result in an aberrantly spliced transcript deleting exon 2 and the consensus ATG site. In the absence of exon 2, translation initiated mostly at an out-of-frame ATG 323 nucleotides downstream, and to a lesser extent at an in-frame ATG 370 nucleotides downstream. Initiation from any of the downstream alternative sites tested in both genes would lead to loss of protein function, but further clinical data is required to confirm if these variants are associated with a high cancer risk. Importantly, our results highlight the need for caution in interpreting the functional and clinical consequences of variation that leads to disruption of the initiation codon, since translation may not necessarily occur from the first downstream alternative start site, or from a single alternative start site.
© 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  cancer syndrome genes; in vitro assay; unclassified variant

Mesh:

Substances:

Year:  2013        PMID: 24302565      PMCID: PMC4041856          DOI: 10.1002/mc.22116

Source DB:  PubMed          Journal:  Mol Carcinog        ISSN: 0899-1987            Impact factor:   4.784


  38 in total

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6.  A cell-free assay for the functional analysis of variants of the mismatch repair protein MLH1.

Authors:  Mark Drost; Jos e B M Zonneveld; Linda van Dijk; Hans Morreau; Carli M Tops; Hans F A Vasen; Juul T Wijnen; Niels de Wind
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Authors:  Gaël A Millot; Marcelo A Carvalho; Sandrine M Caputo; Maaike P G Vreeswijk; Melissa A Brown; Michelle Webb; Etienne Rouleau; Susan L Neuhausen; Thomas v O Hansen; Alvaro Galli; Rita D Brandão; Marinus J Blok; Aneliya Velkova; Fergus J Couch; Alvaro N A Monteiro
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3.  Exome sequencing in genomic regions related to racing performance of Quarter Horses.

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6.  Biochemical and cellular consequences of the antithrombin p.Met1? mutation identified in a severe thrombophilic family.

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7.  Lynch syndrome mutation spectrum in New South Wales, Australia, including 55 novel mutations.

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