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Kidney Disease-Associated APOL1 Variants Have Dose-Dependent, Dominant Toxic Gain-of-Function
Author(s) -
Somenath Datta,
Rama Kataria,
Jia-Yue Zhang,
Savannah Moore,
Kaitlyn Petitpas,
Adam Mohamed,
Nathan H. Zahler,
Martin R. Pollak,
Opeyemi A. Olabisi
Publication year - 2020
Publication title -
journal of the american society of nephrology
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 4.451
H-Index - 279
eISSN - 1533-3450
pISSN - 1046-6673
DOI - 10.1681/asn.2020010079
Subject(s) - cytotoxicity , hek 293 cells , biology , penetrance , cancer research , kidney , allele , cell cycle , cell culture , phenotype , genetics , cell , gene , in vitro
Two coding renal risk variants (RRVs) of the APOL1 gene (G1 and G2) are associated with large increases in CKD rates among populations of recent African descent, but the underlying molecular mechanisms are unknown. Mammalian cell culture models are widely used to study cytotoxicity of RRVs, but results have been contradictory. It remains unclear whether cytotoxicity is RRV-dependent or driven solely by variant-independent overexpression. It is also unknown whether expression of the reference APOL1 allele, the wild-type G0, could prevent cytotoxicity of RRVs.

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