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MESP2 variants contribute to conotruncal heart defects by inhibiting cardiac neural crest cell proliferation
Erge Zhang1, Jianping Yang1, Yang Liu1
1Department of Pediatric Cardiovascular, Xinhua Hospital, School of Medicine, Shanghai Jiaotong University, 1665 Kongjiang Road, Shanghai, 200092, China.
Abstract:
Conotruncal heart defects (CTDs) are closely related to defective outflow tract (OFT) development, in which cardiac neural crest cells (CNCCs) play an indispensable role. However, the genetic etiology of CTDs remains unclear. Mesoderm posterior 2 (MESP2) is an important transcription factor regulating early cardiogenesis. Nevertheless, MESP2 variants have not been reported in congenital heart defect (CHD) patients. We first identified four MESP2 variants in 601 sporadic nonsyndromic CTD patients that were not detected in 400 healthy controls using targeted sequencing. Reverse transcription-quantitative PCR (RT-qPCR), immunohistochemistry, and immunofluorescence assays revealed MESP2 expression in the OFT of Carnegie stage (CS) 11, CS13, and CS15 human embryos and embryonic day (E) 8.5, E10, and E11.5 mouse embryos. Functional analyses in HEK 293T cells, HL-1 cells, JoMa1 cells, and primary mouse CNCCs revealed that MESP2 directly regulates the transcriptional activities of downstream CTD-related genes and promotes CNCC proliferation by regulating cell cycle factors. Three MESP2 variants, c.346G>C (p.G116R), c.921C>G (p.Y307X), and c.59A>T (p.Q20L), altered the transcriptional activities of MYOCD, GATA4, NKX2.5, and CFC1 and inhibited CNCC proliferation by upregulating p21cip1 or downregulating Cdk4. Based on our findings, MESP2 variants disrupted MESP2 function by interfering with CNCC proliferation during OFT development, which may contribute to CTDs. KEY MESSAGES: This study first analyzed MESP2 variants identified in sporadic nonsyndromic CTD patients. MESP2 is expressed in the OFT of different stages of human and mouse embryos. MESP2 regulates the transcriptional activities of downstream CTD-related genes and promotes CNCC proliferation by regulating cell cycle factor p21cip1 or Cdk4.
Insights
Genetic variants in MESP2 were identified in patients with conotruncal heart defects (CTDs). MESP2 regulates cardiac neural crest cell proliferation and gene expression, suggesting a role in CTD development.
Area of Science:
- Developmental Biology
- Genetics
- Cardiology
Background:
- Conotruncal heart defects (CTDs) arise from abnormal outflow tract (OFT) development, involving cardiac neural crest cells (CNCCs).
- The genetic basis of CTDs is not fully understood, and Mesoderm posterior 2 (MESP2) variants have not been previously linked to congenital heart defects (CHDs).
Purpose of the Study:
- To investigate the role of MESP2 variants in sporadic nonsyndromic CTDs.
- To determine MESP2 expression patterns during embryonic development.
- To elucidate the functional impact of MESP2 variants on CNCCs and downstream gene regulation.
Main Methods:
- Targeted sequencing was used to identify MESP2 variants in CTD patients and controls.
- Reverse transcription-quantitative PCR (RT-qPCR), immunohistochemistry, and immunofluorescence assays assessed MESP2 expression in human and mouse embryos.
- Functional analyses in cell lines and primary CNCCs evaluated MESP2's transcriptional activity and effects on cell cycle factors.
Main Results:
- Four MESP2 variants were identified in sporadic nonsyndromic CTD patients, absent in healthy controls.
- MESP2 expression was confirmed in the developing OFT of human and mouse embryos.
- MESP2 variants impaired transcriptional regulation of CTD-related genes (MYOCD, GATA4, NKX2.5, CFC1) and inhibited CNCC proliferation by affecting cell cycle regulators (p21cip1, Cdk4).
Conclusions:
- MESP2 variants disrupt MESP2 function, impacting CNCC proliferation during OFT development.
- These MESP2 alterations are implicated as a potential contributing factor to the etiology of CTDs.
- This study highlights MESP2 as a novel candidate gene in the genetic landscape of sporadic CTDs.
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