Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

SATB2‐LEMD2 interaction links nuclear shape plasticity to regulation of cognition‐related genes

View through CrossRef
Abstract SATB2 is a schizophrenia risk gene and is genetically associated with human intelligence. How it affects cognition at molecular level is currently unknown. Here, we show that interactions between SATB2, a chromosomal scaffolding protein, and the inner nuclear membrane protein LEMD2 orchestrate the response of pyramidal neurons to neuronal activation. Exposure to novel environment in vivo causes changes in nuclear shape of CA1 hippocampal neurons via a SATB2‐dependent mechanism. The activity‐driven plasticity of the nuclear envelope requires not only SATB2, but also its protein interactor LEMD2 and the ESCRT‐III/VPS4 membrane‐remodeling complex. Furthermore, LEMD2 depletion in cortical neurons, similar to SATB2 ablation, affects neuronal activity‐dependent regulation of multiple rapid and delayed primary response genes. In human genetic data, LEMD2‐regulated genes are enriched for de novo mutations reported in intellectual disability and schizophrenia and are, like SATB2‐regulated genes, enriched for common variants associated with schizophrenia and cognitive function. Hence, interactions between SATB2 and the inner nuclear membrane protein LEMD2 influence gene expression programs in pyramidal neurons that are linked to cognitive ability and psychiatric disorder etiology.
Title: SATB2‐LEMD2 interaction links nuclear shape plasticity to regulation of cognition‐related genes
Description:
Abstract SATB2 is a schizophrenia risk gene and is genetically associated with human intelligence.
How it affects cognition at molecular level is currently unknown.
Here, we show that interactions between SATB2, a chromosomal scaffolding protein, and the inner nuclear membrane protein LEMD2 orchestrate the response of pyramidal neurons to neuronal activation.
Exposure to novel environment in vivo causes changes in nuclear shape of CA1 hippocampal neurons via a SATB2‐dependent mechanism.
The activity‐driven plasticity of the nuclear envelope requires not only SATB2, but also its protein interactor LEMD2 and the ESCRT‐III/VPS4 membrane‐remodeling complex.
Furthermore, LEMD2 depletion in cortical neurons, similar to SATB2 ablation, affects neuronal activity‐dependent regulation of multiple rapid and delayed primary response genes.
In human genetic data, LEMD2‐regulated genes are enriched for de novo mutations reported in intellectual disability and schizophrenia and are, like SATB2‐regulated genes, enriched for common variants associated with schizophrenia and cognitive function.
Hence, interactions between SATB2 and the inner nuclear membrane protein LEMD2 influence gene expression programs in pyramidal neurons that are linked to cognitive ability and psychiatric disorder etiology.

Related Results

Abstract 1423: SatB2, targeted by miR31, is a modulator in cancer microenvironment
Abstract 1423: SatB2, targeted by miR31, is a modulator in cancer microenvironment
Abstract Cancer growth and metastasis involve an active interaction between primary tumor cells and the tumor's microenvironment, which consists of fibroblasts, vasc...
Satb2 Expression In Colorectal Carcinoma And Its Association With Grade And Stage Of Tumor
Satb2 Expression In Colorectal Carcinoma And Its Association With Grade And Stage Of Tumor
Background: Colorectal carcinoma (CRC) is one of the most prevalent malignancies worldwide and a leading cause of cancer-related mortality. Special AT-rich sequence-binding protein...
Nuclear Weapons, Cyber Warfare, and Cyber Security: Ethical and Anticipated Ethical Issues
Nuclear Weapons, Cyber Warfare, and Cyber Security: Ethical and Anticipated Ethical Issues
     In this paper, we discuss the interrelationship of nuclear weapons, cyber warfare, and cyber security. Some of the most significant cyber threats to nuclear stability are now ...
fects of early drought-induced phenotypic plasticity on late plant seedling interactions
fects of early drought-induced phenotypic plasticity on late plant seedling interactions
Abstract In nature, plants are often exposed to a variety of environments. The study of plant phenotypic plasticity cannot ignore a variety of environmental factors. At pre...

Back to Top