Klf15 Is Critical for the Development and Differentiation of Drosophila Nephrocytes

Autor(en): Ivy, Jessica R.
Drechsler, Maik
Catterson, James H.
Bodmer, Rolf
Ocorr, Karen
Paululat, Achim 
Hartley, Paul S.
Stichwörter: CARDIAC-FUNCTION; CUBILIN; DYNAMICS; ENHANCER; GENE-EXPRESSION; HEART; INSECT; Multidisciplinary Sciences; PERICARDIAL CELLS; REGULATOR; Science & Technology - Other Topics; ULTRASTRUCTURE
Erscheinungsdatum: 2015
Herausgeber: PUBLIC LIBRARY SCIENCE
Journal: PLOS ONE
Volumen: 10
Ausgabe: 8
Zusammenfassung: 
Insect nephrocytes are highly endocytic scavenger cells that represent the only invertebrate model for the study of human kidney podocytes. Despite their importance, nephrocyte development is largely uncharacterised. This work tested whether the insect ortholog of mammalian Kidney Kruppel-Like Factor (Klf15), a transcription factor required for mammalian podocyte differentiation, was required for insect nephrocyte development. It was found that expression of Drosophila Klf15 (dKlf15, previously known as Bteb2) was restricted to the only two nephrocyte populations in Drosophila, the garland cells and pericardial nephrocytes. Loss of dKlf15 function led to attrition of both nephrocyte populations and sensitised larvae to the xenotoxin silver nitrate. Although pericardial nephrocytes in dKlf15 loss of function mutants were specified during embryogenesis, they failed to express the slit diaphragm gene sticks and stones and did not form slit diaphragms. Conditional silencing of dKlf15 in adults led to reduced surface expression of the endocytic receptor Amnionless and loss of in vivo scavenger function. Over-expression of dKlf15 increased nephrocyte numbers and rescued age-dependent decline in nephrocyte function. The data place dKlf15 upstream of sns and Amnionless in a nephrocyte-restricted differentiation pathway and suggest dKlf15 expression is both necessary and sufficient to sustain nephrocyte differentiation. These findings explain the physiological relevance of dKlf15 in Drosophila and imply that the role of KLF15 in human podocytes is evolutionarily conserved.
ISSN: 19326203
DOI: 10.1371/journal.pone.0134620

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