Three GADD45 Isoforms Contribute to Hypertonic Stress Phenotype of Murine Renal Inner Medullary Cells
Overview
Physiology
Affiliations
Mammalian renal inner medullary (IM) cells routinely face and resist hypertonic stress. Such stress causes DNA damage to which IM cells respond with cell cycle arrest. We report that three growth arrest and DNA damage-inducible 45 (GADD45) isoforms (GADD45alpha, GADDD45beta, and GADD45gamma) are induced by acute hypertonicity in murine IM cells. Maximum induction occurs 16-18 h after the onset of hypertonicity. GADD45gamma is induced more strongly (7-fold) than GADD45beta (3-fold) and GADD45alpha (2-fold). GADD45alpha and GADD45beta protein induction is more pronounced and stable compared with the corresponding transcripts. Hypertonicity of various forms (NaCl, KCl, sorbitol, or mannitol) always induces GADD45 transcripts, whereas nonhypertonic hyperosmolality (urea) has no effect. Actinomycin D does not prevent hypertonic GADD45 induction, indicating that mRNA stabilization is the mechanism that mediates this induction. GADD45 induction patterns in IM cells exposed to 10 different stresses suggest isoform specificity, but similar functions, of individual isoforms during hypertonicity, heat shock, and heavy metal stress, when GADD45gamma induction is strongest (17-fold). These data associate all known GADD45 isoforms with the hypertonicity phenotype of renal IM cells.
Snapshots of nascent RNA reveal cell- and stimulus-specific responses to acute kidney injury.
Shen T, Stauber J, Xu K, Jacunski A, Paragas N, Callahan M JCI Insight. 2022; 7(6).
PMID: 35230973 PMC: 8986083. DOI: 10.1172/jci.insight.146374.
Li T, Xu L, Teng J, Ma Y, Liu W, Wang Y Dig Dis Sci. 2019; 65(4):1032-1041.
PMID: 31562612 DOI: 10.1007/s10620-019-05836-8.
Wang X, Kultz D Proc Natl Acad Sci U S A. 2017; 114(13):E2729-E2738.
PMID: 28289196 PMC: 5380061. DOI: 10.1073/pnas.1614712114.
Primary cilia regulate the osmotic stress response of renal epithelial cells through TRPM3.
Siroky B, Kleene N, Kleene S, Varnell Jr C, Comer R, Liu J Am J Physiol Renal Physiol. 2017; 312(4):F791-F805.
PMID: 28122715 PMC: 5407065. DOI: 10.1152/ajprenal.00465.2015.
GADD45B mediates podocyte injury in zebrafish by activating the ROS-GADD45B-p38 pathway.
Chen Z, Wan X, Hou Q, Shi S, Wang L, Chen P Cell Death Dis. 2016; 7:e2068.
PMID: 26794661 PMC: 4816163. DOI: 10.1038/cddis.2015.300.