TY - JOUR
T1 - APOL1-Mediated Cell Injury Involves Disruption of Conserved Trafficking Processes
AU - Kruzel-Davila, Etty
AU - Shemer, Revital
AU - Ofir, Ayala
AU - Bavli-Kertselli, Ira
AU - Darlyuk-Saadon, Ilona
AU - Oren-Giladi, Pazit
AU - Wasser, Walter G.
AU - Magen, Daniella
AU - Zaknoun, Eid
AU - Schuldiner, Maya
AU - Salzberg, Adi
AU - Kornitzer, Daniel
AU - Marelja, Zvonimir
AU - Simons, Matias
AU - Skorecki, Karl
N1 - Publisher Copyright: © 2017 by the American Society of Nephrology.
PY - 2017/4
Y1 - 2017/4
N2 - APOL1 harbors C-terminal sequence variants (G1 andG2),which account formuch of the increased risk for kidney disease in sub-Saharan African ancestry populations. Expression of the risk variants has also been shown to cause injury to podocytes and other cell types, but the underlying mechanisms are not understood. We usedDrosophilamelanogaster and Saccharomyces cerevisiae to help clarify thesemechanisms. Ubiquitous expression of the human APOL1 G1 and G2 disease risk alleles caused near-complete lethality in D. melanogaster, with no effect of theG0 nonrisk APOL1 allele, corresponding to the pattern of human disease risk. We also observed a congruent pattern of cellular damage with tissue-specific expression of APOL1. In particular, expression of APOL1 risk variants in D. melanogaster nephrocytes caused cellautonomous accumulation of the endocytic tracer atrial natriuretic factor-red fluorescent protein at early stages and nephrocyte loss at later stages.We also observed differential toxicity of the APOL1 risk variants compared with the APOL1 nonrisk variants in S. cerevisiae, including impairment of vacuole acidification. Yeast strains defective in endosomal trafficking or organelle acidification but not those defective in autophagy displayed augmented APOL1 toxicity with all isoforms. This pattern of differential injury by theAPOL1 risk alleles comparedwith the nonrisk alleles across evolutionarily divergent species is consistent with an impairment of conserved core intracellular endosomal trafficking processes. This finding should facilitate the identification of cell injury pathways and corresponding therapeutic targets of interest in these amenable experimental platforms.
AB - APOL1 harbors C-terminal sequence variants (G1 andG2),which account formuch of the increased risk for kidney disease in sub-Saharan African ancestry populations. Expression of the risk variants has also been shown to cause injury to podocytes and other cell types, but the underlying mechanisms are not understood. We usedDrosophilamelanogaster and Saccharomyces cerevisiae to help clarify thesemechanisms. Ubiquitous expression of the human APOL1 G1 and G2 disease risk alleles caused near-complete lethality in D. melanogaster, with no effect of theG0 nonrisk APOL1 allele, corresponding to the pattern of human disease risk. We also observed a congruent pattern of cellular damage with tissue-specific expression of APOL1. In particular, expression of APOL1 risk variants in D. melanogaster nephrocytes caused cellautonomous accumulation of the endocytic tracer atrial natriuretic factor-red fluorescent protein at early stages and nephrocyte loss at later stages.We also observed differential toxicity of the APOL1 risk variants compared with the APOL1 nonrisk variants in S. cerevisiae, including impairment of vacuole acidification. Yeast strains defective in endosomal trafficking or organelle acidification but not those defective in autophagy displayed augmented APOL1 toxicity with all isoforms. This pattern of differential injury by theAPOL1 risk alleles comparedwith the nonrisk alleles across evolutionarily divergent species is consistent with an impairment of conserved core intracellular endosomal trafficking processes. This finding should facilitate the identification of cell injury pathways and corresponding therapeutic targets of interest in these amenable experimental platforms.
UR - http://www.scopus.com/inward/record.url?scp=85021848570&partnerID=8YFLogxK
U2 - 10.1681/ASN.2016050546
DO - 10.1681/ASN.2016050546
M3 - مقالة
C2 - 27864431
SN - 1046-6673
VL - 28
SP - 1117
EP - 1130
JO - Journal Of The American Society Of Nephrology
JF - Journal Of The American Society Of Nephrology
IS - 4
ER -