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

Coordinated cadherin functions sculpt respiratory motor circuit connectivity

View through CrossRef
Abstract Breathing, and the motor circuits that control it, are essential for life. At the core of respiratory circuits are Dbx1-derived interneurons, which generate the rhythm and pattern of breathing, and phrenic motor neurons (MNs), which provide the final motor output that drives diaphragm muscle contractions during inspiration. Despite their critical function, the principles that dictate how respiratory circuits assemble are unknown. Here we show that coordinated activity of a type I cadherin (N-cadherin) and type II cadherins (Cadherin-6, −9, and −10) is required in both MNs and Dbx1-derived neurons to generate robust respiratory motor output. Both MN- and Dbx1-specific cadherin inactivation during a critical developmental window results in perinatal lethality due to respiratory failure and a striking reduction in phrenic MN bursting activity. This combinatorial cadherin code is required to establish phrenic MN cell body and dendritic topography; surprisingly, however, cell body position appears to be dispensable for the targeting of phrenic MNs by descending respiratory inputs. Our findings demonstrate that type I and type II cadherins function cooperatively throughout the respiratory circuit to generate a robust breathing output and reveal novel strategies that drive the assembly of motor circuits.
Title: Coordinated cadherin functions sculpt respiratory motor circuit connectivity
Description:
Abstract Breathing, and the motor circuits that control it, are essential for life.
At the core of respiratory circuits are Dbx1-derived interneurons, which generate the rhythm and pattern of breathing, and phrenic motor neurons (MNs), which provide the final motor output that drives diaphragm muscle contractions during inspiration.
Despite their critical function, the principles that dictate how respiratory circuits assemble are unknown.
Here we show that coordinated activity of a type I cadherin (N-cadherin) and type II cadherins (Cadherin-6, −9, and −10) is required in both MNs and Dbx1-derived neurons to generate robust respiratory motor output.
Both MN- and Dbx1-specific cadherin inactivation during a critical developmental window results in perinatal lethality due to respiratory failure and a striking reduction in phrenic MN bursting activity.
This combinatorial cadherin code is required to establish phrenic MN cell body and dendritic topography; surprisingly, however, cell body position appears to be dispensable for the targeting of phrenic MNs by descending respiratory inputs.
Our findings demonstrate that type I and type II cadherins function cooperatively throughout the respiratory circuit to generate a robust breathing output and reveal novel strategies that drive the assembly of motor circuits.

Related Results

Effect of N-cadherin on Chondrogenic Differentiation of Bone Marrow Derived Mesenchymal Stem Cells through Wnt Signaling Pathway
Effect of N-cadherin on Chondrogenic Differentiation of Bone Marrow Derived Mesenchymal Stem Cells through Wnt Signaling Pathway
Abstract Objective: To compare and analyze the effect of N-cadherin on chondrogenic differentiation of bone marrow derived mesenchymal stem cells (BMSCs) and to explore the...
Effect of N-cadherin on Chondrogenic Differentiation of Bone Marrow-Derived Mesenchymal Stem Cells through Wnt Signaling Pathway
Effect of N-cadherin on Chondrogenic Differentiation of Bone Marrow-Derived Mesenchymal Stem Cells through Wnt Signaling Pathway
This study aimed to compare and analyze the effect of N-cadherin on chondrogenic differentiation of bone marrow-derived mesenchymal stem cells (BMSCs) and to explore the related me...
Data from P-Cadherin Promotes Cell-Cell Adhesion and Counteracts Invasion in Human Melanoma
Data from P-Cadherin Promotes Cell-Cell Adhesion and Counteracts Invasion in Human Melanoma
<div>Abstract<p>Malignant transformation of melanocytes frequently coincides with alterations in epithelial cadherin (E-cadherin) expression, switching on of neural cad...
Data from P-Cadherin Promotes Cell-Cell Adhesion and Counteracts Invasion in Human Melanoma
Data from P-Cadherin Promotes Cell-Cell Adhesion and Counteracts Invasion in Human Melanoma
<div>Abstract<p>Malignant transformation of melanocytes frequently coincides with alterations in epithelial cadherin (E-cadherin) expression, switching on of neural cad...
Abstract 4965: Metformin has an anticancer effect by repressing TWIST/N-cadherin signaling.
Abstract 4965: Metformin has an anticancer effect by repressing TWIST/N-cadherin signaling.
Abstract Introduction and Objective. Metformin, one of the most commonly used medications for treatment of type 2 diabetes, has emerged as a potential anticancer age...
KLRG1, Cadherins and their Interaction (35.29)
KLRG1, Cadherins and their Interaction (35.29)
Abstract The killer cell lectin-like receptor G1 (KLRG1) is a unique inhibitory receptor expressed on a phenotypically mature subset of resting NK cells as well a...
Abstract 2708: E-cadherin expression might be a predictive marker for chemosensitivity in triple-negative breast cancer
Abstract 2708: E-cadherin expression might be a predictive marker for chemosensitivity in triple-negative breast cancer
Abstract Introduction: Triple-negative breast cancer (TNBC), a subtype of breast tumor with ER negative, PR negative, and HER2 negative, shows a poor prognosis becau...

Back to Top