» Articles » PMID: 24803651

Identification of Ssm1b, a Novel Modifier of DNA Methylation, and Its Expression During Mouse Embryogenesis

Overview
Journal Development
Specialty Biology
Date 2014 May 8
PMID 24803651
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

The strain-specific modifier Ssm1 is responsible for the strain-dependent methylation of particular E. coli gpt-containing transgenic sequences. Here, we identify Ssm1 as the KRAB-zinc finger (ZF) gene 2610305D13Rik located on distal chromosome 4. Ssm1b is a member of a gene family with an unusual array of three ZFs. Ssm1 family members in C57BL/6 (B6) and DBA/2 (D2) mice have various amino acid changes in their ZF domain and in the linker between the KRAB and ZF domains. Ssm1b is expressed up to E8.5; its target transgene gains partial methylation by this stage as well. At E9.5, Ssm1b mRNA is no longer expressed but by then its target has become completely methylated. By contrast, in D2 embryos the transgene is essentially unmethylated. Methylation during B6 embryonic development depends on Dnmt3b but not Mecp2. In differentiating B6 embryonic stem cells methylation spreads from gpt to a co-integrated neo gene that has a similarly high CpG content as gpt, but neo alone is not methylated. In adult B6 mice, Ssm1b is expressed in ovaries, but in other organs only other members of the Ssm1 family are expressed. Interestingly, the transgene becomes methylated when crossed into some, but not other, wild mice that were kept outbred in the laboratory. Thus, polymorphisms for the methylation patterns seen among laboratory inbred strains are also found in a free-living population. This may imply that mice that do not have the Ssm1b gene may use another member of the Ssm1 family to control the potentially harmful expression of certain endogenous or exogenous genes.

Citing Articles

KRAB zinc finger protein diversification drives mammalian interindividual methylation variability.

Bertozzi T, Elmer J, Macfarlan T, Ferguson-Smith A Proc Natl Acad Sci U S A. 2020; 117(49):31290-31300.

PMID: 33239447 PMC: 7733849. DOI: 10.1073/pnas.2017053117.


Strain-Specific Epigenetic Regulation of Endogenous Retroviruses: The Role of -Acting Modifiers.

Elmer J, Ferguson-Smith A Viruses. 2020; 12(8).

PMID: 32727076 PMC: 7472028. DOI: 10.3390/v12080810.


Spotting the enemy within: Targeted silencing of foreign DNA in mammalian genomes by the Krüppel-associated box zinc finger protein family.

Wolf G, Greenberg D, Macfarlan T Mob DNA. 2015; 6:17.

PMID: 26435754 PMC: 4592553. DOI: 10.1186/s13100-015-0050-8.


Retrotransposons shape species-specific embryonic stem cell gene expression.

Robbez-Masson L, Rowe H Retrovirology. 2015; 12:45.

PMID: 26021318 PMC: 4448215. DOI: 10.1186/s12977-015-0173-5.


The KRAB zinc finger protein ZFP809 is required to initiate epigenetic silencing of endogenous retroviruses.

Wolf G, Yang P, Fuchtbauer A, Fuchtbauer E, Silva A, Park C Genes Dev. 2015; 29(5):538-54.

PMID: 25737282 PMC: 4358406. DOI: 10.1101/gad.252767.114.

References
1.
Engler P, STORB U . Hypomethylation is necessary but not sufficient for V(D)J recombination within a transgenic substrate. Mol Immunol. 2000; 36(17):1169-73. DOI: 10.1016/s0161-5890(99)00124-8. View

2.
Niwa H, Yamamura K, Miyazaki J . Efficient selection for high-expression transfectants with a novel eukaryotic vector. Gene. 1991; 108(2):193-9. DOI: 10.1016/0378-1119(91)90434-d. View

3.
Wilkie T, Brinster R, Palmiter R . Germline and somatic mosaicism in transgenic mice. Dev Biol. 1986; 118(1):9-18. DOI: 10.1016/0012-1606(86)90068-0. View

4.
Azuara V, Perry P, Sauer S, Spivakov M, Jorgensen H, John R . Chromatin signatures of pluripotent cell lines. Nat Cell Biol. 2006; 8(5):532-8. DOI: 10.1038/ncb1403. View

5.
Guy J, Hendrich B, Holmes M, Martin J, Bird A . A mouse Mecp2-null mutation causes neurological symptoms that mimic Rett syndrome. Nat Genet. 2001; 27(3):322-6. DOI: 10.1038/85899. View