Searching the Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

Alterations of the Sialylation Machinery in Brugada Syndrome.

Andrea Ghiroldi | Giuseppe Ciconte | Pasquale Creo | Adriana Tarantino | Dario Melgari | Sara D'Imperio | Marco Piccoli | Federica Cirillo | Emanuele Micaglio | Michelle M Monasky | Anthony Frosio | Emanuela T Locati | Gabriele Vicedomini | Ilaria Rivolta | Carlo Pappone | Luigi Anastasia
International journal of molecular sciences | 2022

Brugada Syndrome (BrS) is an inherited arrhythmogenic disorder with an increased risk of sudden cardiac death. Recent evidence suggests that BrS should be considered as an oligogenic or polygenic condition. Mutations in genes associated with BrS are found in about one-third of patients and they mainly disrupt the cardiac sodium channel NaV1.5, which is considered the main cause of the disease. However, voltage-gated channel's activity could be impacted by post-translational modifications such as sialylation, but their role in BrS remains unknown. Thus, we analyzed high risk BrS patients (n = 42) and healthy controls (n = 42) to assess an involvement of sialylation in BrS. Significant alterations in gene expression and protein sialylation were detected in Peripheral Blood Mononuclear Cells (PBMCs) from BrS patients. These changes were significantly associated with the phenotypic expression of the disease, as the size of the arrhythmogenic substrate and the duration of epicardial electrical abnormalities. Moreover, protein desialylation caused a reduction in the sodium current in an in vitro NaV1.5-overexpressing model. Dysregulation of the sialylation machinery provides definitive evidence that BrS affects extracardiac tissues, suggesting an underlying cause of the disease. Moreover, detection of these changes at the systemic level and their correlation with the clinical phenotype hint at the existence of a biomarker signature for BrS.

Pubmed ID: 36361941

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

None

Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.

This is a list of tools and resources that we have found mentioned in this publication.


Promega (tool)

RRID:SCR_006724

An Antibody supplier

View all literature mentions

Abbott Diagnostics (tool)

RRID:SCR_008392

Company offering a broad range of instrument systems and diagnostic tests for hospitals, reference labs, blood banks, physician offices and clinics to aid in the diagnosis of a range of serious health issues such as infectious diseases, cancer, and diabetes, as well as monitor other important indicators of health.

View all literature mentions

Kaluza (tool)

RRID:SCR_016182

Flow cytometry analysis software.

View all literature mentions

HEK293 (tool)

RRID:CVCL_0045

Cell line HEK293 is a Transformed cell line with a species of origin Homo sapiens (Human)

View all literature mentions

HEK293-A (tool)

RRID:CVCL_6910

Cell line HEK293-A is a Transformed cell line with a species of origin Homo sapiens (Human)

View all literature mentions