A newly identified ferritin L‐subunit variant results in increased proteasomal subunit degradation, impaired complex assembly, and severe hypoferritinemia

Author:

Shagidov Dayana1,Guttmann‐Raviv Noga1,Cunat Séverine2ORCID,Frech Liora1,Giansily‐Blaizot Muriel2ORCID,Ghatpande Niraj1ORCID,Abelya Gili3,Frank Gabriel A.345ORCID,Aguilar Martinez Patricia2ORCID,Meyron‐Holtz Esther G.1ORCID

Affiliation:

1. Laboratory of Molecular Nutrition, Faculty of Biotechnology and Food Engineering Israel Institute of Technology–Technion Haifa Israel

2. Department of Hematology Biology CHU and University of Montpellier, Hôpital Saint Eloi Montpellier Cedex 5 France

3. Department of Life Sciences, Marcus Family Campus Ben‐Gurion University of the Negev Beer‐Sheva Israel

4. Ilse Katz Institute for Nanoscale Science and Technology Ben‐Gurion University of the Negev Beer‐Sheva Israel

5. The National Institute for Biotechnology in the Negev – NIBN Ben‐Gurion University of the Negev Beer‐Sheva Israel

Abstract

AbstractFerritin is a hetero‐oligomeric nanocage, composed of 24 subunits of two types, FTH1 and FTL. It protects the cell from excess reactive iron, by storing iron in its cavity. FTH1 is essential for the recruitment of iron into the ferritin nanocage and for cellular ferritin trafficking, whereas FTL contributes to nanocage stability and iron nucleation inside the cavity. Here we describe a female patient with a medical history of severe hypoferritinemia without anemia. Following inadequate heavy IV iron supplementation, the patient developed severe iron overload and musculoskeletal manifestations. However, her serum ferritin levels rose only to normal range. Genetic analyses revealed an undescribed homozygous variant of FTL (c.92A > G), which resulted in a Tyr31Cys substitution (FTLY31C). Analysis of the FTL structure predicted that the Y31C mutation will reduce the variant's stability. Expression of the FTLY31C variant resulted in significantly lower cellular ferritin levels compared with the expression of wild‐type FTL (FTLWT). Proteasomal inhibition significantly increased the initial levels of FTLY31C, but could not protect FTLY31C subunits from successive degradation. Further, variant subunits successfully incorporated into hetero‐polymeric nanocages in the presence of sufficient levels of FTH1. However, FTLY31C subunits poorly assembled into nanocages when FTH1 subunit levels were low. These results indicate an increased susceptibility of unassembled monomeric FTLY31C subunits to proteasomal degradation. The decreased cellular assembly of FTLY31C‐rich nanocages may explain the low serum ferritin levels in this patient and emphasize the importance of a broader diagnostic approach of hypoferritinemia without anemia, before IV iron supplementation.

Funder

Israel Science Foundation

Publisher

Wiley

Subject

Hematology

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1. Iron-sucrose;Reactions Weekly;2024-01-27

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