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Mucins and CFTR: Their Close Relationship

期刊

出版社

MDPI
DOI: 10.3390/ijms231810232

关键词

mucus; mucins; cystic fibrosis (CF); CFTR; single-cell transcriptomics; airway clearance; polymeric network; viscoelasticity

资金

  1. Vertex Pharmaceuticals
  2. Cystic Fibrosis Foundation [OKUDA20G0, EHRE20XX0, BOUCHE19XX0]
  3. NIH [P30 DK 06598816, P01 HL 108808-08]
  4. Cystic Fibrosis Research Incorporation

向作者/读者索取更多资源

This article discusses the relationship between mucociliary clearance and cystic fibrosis (CF). Using transcriptome analysis at the single-cell level, a close relationship between MUC5AC and MUC5B mucins and CFTR in the lungs was discovered. Furthermore, recent findings on the biochemical and biophysical properties of airway mucus highlight the importance of mucin secretion and CFTR-mediated ion transport in maintaining airway mucus homeostasis.
Mucociliary clearance is a critical defense mechanism for the lungs governed by regionally coordinated epithelial cellular activities, including mucin secretion, cilia beating, and transepithelial ion transport. Cystic fibrosis (CF), an autosomal genetic disorder caused by the dysfunction of the cystic fibrosis transmembrane conductance regulator (CFTR) channel, is characterized by failed mucociliary clearance due to abnormal mucus biophysical properties. In recent years, with the development of highly effective modulator therapies, the quality of life of a significant number of people living with CF has greatly improved; however, further understanding the cellular biology relevant to CFTR and airway mucus biochemical interactions are necessary to develop novel therapies aimed at restoring CFTR gene expression in the lungs. In this article, we discuss recent advances of transcriptome analysis at single-cell levels that revealed a heretofore unanticipated close relationship between secretory MUC5AC and MUC5B mucins and CFTR in the lungs. In addition, we review recent findings on airway mucus biochemical and biophysical properties, focusing on how mucin secretion and CFTR-mediated ion transport are integrated to maintain airway mucus homeostasis in health and how CFTR dysfunction and restoration of function affect mucus properties.

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