Δευτέρα 22 Οκτωβρίου 2018

Specificity of MLL1 and TET3 CXXC domains towards naturally occurring cytosine modifications

Publication date: Available online 22 October 2018

Source: Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms

Author(s): Anna Stroynowska-Czerwińska, Anna Piasecka, Matthias Bochtler

Abstract

CXXC domains have traditionally been considered as CpG specific DNA binding domains that are repelled by cytosine modifications. This view has recently been challenged by the demonstration that CXXC domain of TET3 has relaxed sequence specificity and binds with the highest affinity to symmetric DNA duplex containing 5caCpG. Here, we present a comparative analysis of the MLL1-CXXC and TET3-CXXC sequence specificity and tolerance to cytosine modifications (5-methyl, 5-hydroxymethyl, 5-formyl, 5-carboxyl) in CpG and non-CpG context. For the first time, we take into consideration possible interference from cytosine bases elsewhere in the sequence. We show that despite similar overall structure, MLL1-CXXC has greater sequence and modification specificity than TET3-CXXC. MLL1-CXXC is specific only for CpG and does not tolerate any cytosine modifications. In contrast, TET3-CXXC does not require the CpG context of cytosine bases. Methyl-, formyl- and carboxyl-modifications are tolerated, but only preceding G. Based on our and other data we propose a parsimonious model of MLL1-CXXC and TET3-CXXC DNA binding. This model explains why the binding of modified DNA duplexes by TET3-CXXC requires in some cases a register shift and is therefore context-dependent.



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Going to the negative: genomics for optimized medical prescription



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The present and future of whole-exome sequencing in studying and treating human reproductive disorders

Publication date: Available online 22 October 2018

Source: Journal of Genetics and Genomics

Author(s): Wei Guo, Xiaohui Zhu, Liying Yan, Jie Qiao

Abstract

The causes of recurrent spontaneous abortion (RSA) and fetal malformations are multifactorial and unclear in most cases. Environmental, maternal, and genetic factors have been shown to contribute to these defects. Whole exome sequencing (WES) is widely used to detect genetic variations associated with human diseases and has recently been successfully applied to unveil genetic causes of unexplained recurrent spontaneous abortion (URSA) and fetal malformations. Here, we review the current discovery and diagnosis strategies to identify the underlying pathogenic mutations of URSA and fetal malformations using WES technology and propose to further develop WES, both to advance our understanding of these diseases and to eventually lead to targeted therapies for reproductive disorders.



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UK Biobank — a new era in genomic medicine



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Developmental delay and failure to thrive associated with a loss‐of‐function variant in WHSC1 (NSD2)

American Journal of Medical Genetics Part A, EarlyView.


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Olfactory function in patients with nonsyndromic orofacial clefts and their unaffected relatives

American Journal of Medical Genetics Part A, EarlyView.


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Metabolic responses to walking in children with Prader‐Willi syndrome on growth hormone replacement therapy

American Journal of Medical Genetics Part A, EarlyView.


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