SET (Suppressor of variegation, Enhancer of Zeste, Trithorax) and MYND (Myeloid-Nervy-DEAF1) domain-containing proteins (SMYD) have been found to methylate a variety of histone and non-histone targets which contribute to their various roles in cell regulation including chromatin remodeling, transcription, signal transduction, and cell cycle control. During early development, SMYD proteins are believed to act as an epigenetic regulator for myogenesis and cardiomyocyte differentiation as they are abundantly expressed in cardiac and skeletal muscle. SMYD proteins are also of therapeutic interest due to the growing list of carcinomas and cardiovascular diseases linked to SMYD overexpression or dysfunction making them a putative target for dru...
AbstractProtein lysine methylation controls gene expression and repair of deoxyribonucleic acid in t...
protein 2 (SMYD2), a member of the SMYD protein family. However, the interest in better understandin...
Chromatin modifying enzymes play a critical role in cardiac differentiation. Previously, it has been...
Abstract: SET (Suppressor of variegation, Enhancer of Zeste, Trithorax) and MYND (Myeloid-Nervy-DEAF...
Protein lysine methylation is a post-translational modification (PTM) that promotes protein complex ...
Post-translational modifications of histone tails have fundamental roles in chromatin structure and...
Epigenetics is an emerging field, due to its relevance in the regulation of a wide range of biologic...
The SET and MYND Domain (SMYD) proteins comprise a unique family of multi-domain SET histone methylt...
SET and MYND domain-containing proteins (SMYD) are a special family of histone lysine methyltransfer...
Very little is known about SMYD2 (SET and MYND containing protein 2), which is a member of the SMYD ...
A comprehensive understanding of the mechanisms involved in epigenetic changes in gene expression is...
All authors are with the Section of Molecular Genetics and Microbiology and Institute for Cellular a...
Our understanding of protein lysine methyltransferases and their substrates remains limited despite ...
It has been almost two decades since studies upon the SET-MYND (SMYD) family of lysine methyltransfe...
Epigenetic regulation of gene expression plays a pivotal role in the establishment of developmental ...
AbstractProtein lysine methylation controls gene expression and repair of deoxyribonucleic acid in t...
protein 2 (SMYD2), a member of the SMYD protein family. However, the interest in better understandin...
Chromatin modifying enzymes play a critical role in cardiac differentiation. Previously, it has been...
Abstract: SET (Suppressor of variegation, Enhancer of Zeste, Trithorax) and MYND (Myeloid-Nervy-DEAF...
Protein lysine methylation is a post-translational modification (PTM) that promotes protein complex ...
Post-translational modifications of histone tails have fundamental roles in chromatin structure and...
Epigenetics is an emerging field, due to its relevance in the regulation of a wide range of biologic...
The SET and MYND Domain (SMYD) proteins comprise a unique family of multi-domain SET histone methylt...
SET and MYND domain-containing proteins (SMYD) are a special family of histone lysine methyltransfer...
Very little is known about SMYD2 (SET and MYND containing protein 2), which is a member of the SMYD ...
A comprehensive understanding of the mechanisms involved in epigenetic changes in gene expression is...
All authors are with the Section of Molecular Genetics and Microbiology and Institute for Cellular a...
Our understanding of protein lysine methyltransferases and their substrates remains limited despite ...
It has been almost two decades since studies upon the SET-MYND (SMYD) family of lysine methyltransfe...
Epigenetic regulation of gene expression plays a pivotal role in the establishment of developmental ...
AbstractProtein lysine methylation controls gene expression and repair of deoxyribonucleic acid in t...
protein 2 (SMYD2), a member of the SMYD protein family. However, the interest in better understandin...
Chromatin modifying enzymes play a critical role in cardiac differentiation. Previously, it has been...