Severe Iron Metabolism Defects in Mice With Double Knockout of the Multicopper Ferroxidases Hephaestin and Ceruloplasmin

Autor: Yan Lu, Gregory J. Anderson, Pavle Matak, Huijun Chen, Sarah J. Wilkins, Scott C. Kogan, Deepak Darshan, Brie K. Fuqua, Alex Loguinov, Chris D. Vulpe, Linda A. Dunn, Joshua L. Dunaief, David M. Frazer
Rok vydání: 2018
Předmět:
mice lacking CP in the whole body
Male
Hephaestin
Hephfl/flCp
polymerase chain reaction
3′-diaminobenzidine
Mice
0302 clinical medicine
PCR
polymerase chain reaction

Homeostasis
PBS
Original Research
Hephsla/slaCp-/-
mice lacking CP in the whole body and expressing only the sla mutant form of HEPH

chemistry.chemical_classification
HCI
TBST
Cp-/-
mice lacking CP in the whole body

WT
HEPH
hephaestin

Gastroenterology
HCI
hydrochloric acid

GI
gastrointestinal

GI
3. Good health
Absorption
Physiological

mice lacking CP in the whole body and expressing only the sla mutant form of HEPH
PCR
Editorial
Organ Specificity
mice lacking HEPH in the intestine alone
Hephint/intCp-/-
mice lacking HEPH in the intestine alone and lacking CP in the whole body

standard deviation
Iron Overload
Intestinal Iron Absorption
FDR
false discovery rate

Anemia
Duodenum
Knockout
Physiological
TIBC
03 medical and health sciences
Hephfl/flCp-/-
mice with floxed Heph alleles and lacking CP in the whole body

Hephsla/slaCp
Hephint/int
mice lacking HEPH in the intestine alone

total iron binding capacity
mice with floxed Heph alleles
Iron Deficiency Anemia
Ligation
Tris-buffered saline with 0.1% Tween-20
SD
NTBI
TBST
Tris-buffered saline with 0.1% Tween-20

Animal
Cp
MCF
multicopper ferroxidase

mice with floxed Heph alleles and lacking CP in the whole body
medicine.disease
gastrointestinal
WT
wild-type

TF
transferrin

Mice
Inbred C57BL

030104 developmental biology
Enterocytes
chemistry
Iron-deficiency anemia
CP
ceruloplasmin

NTBI
non-transferrin bound iron

Ceruloplasmin
mice lacking HEPH in the intestine alone and lacking CP in the whole body
030217 neurology & neurosurgery
Non-Transferrin Bound Iron
0301 basic medicine
hydrochloric acid
Inbred C57BL
HEPH
double-knockout mice lacking both HEPH and CP
Heph-/-
mice lacking HEPH in the whole body

Body Size
sla
Cation Transport Proteins
Mice
Knockout

multicopper ferroxidase
biology
medicine.diagnostic_test
Heph-/-Cp-/- or DKO
double-knockout mice lacking both HEPH and CP

Heph
Animals
Suckling

Phenotype
CP
Serum iron
Female
FPN1
ferroportin 1

Oxidation-Reduction
TF
sex-linked anemia
hephaestin
FPN1
Hephint/intCp
Iron
PBS
phosphate-buffered saline

phosphate-buffered saline
sla
sex-linked anemia

Absorption
FDR
non-transferrin bound iron
medicine
DAB
Animals
transferrin
mice lacking HEPH in the whole body
Suckling
Hephfl/fl
lcsh:RC799-869
wild-type
MCF
Hepatology
DAB
3
3′-diaminobenzidine

TIBC
total iron binding capacity

Body Weight
Membrane Proteins
Metabolism
ferroportin 1
Molecular biology
Disease Models
Animal

Transferrin
Disease Models
biology.protein
Hephint/int
lcsh:Diseases of the digestive system. Gastroenterology
false discovery rate
Heph-/-Cp-/- or DKO
Hephfl/fl
mice with floxed Heph alleles

SD
standard deviation
Zdroj: Cellular and Molecular Gastroenterology and Hepatology
Cellular and Molecular Gastroenterology and Hepatology, Vol 6, Iss 4, Pp 405-427 (2018)
Cellular and molecular gastroenterology and hepatology, vol 6, iss 4
ISSN: 2352-345X
Popis: Background & Aims Multicopper ferroxidases (MCFs) facilitate intestinal iron absorption and systemic iron recycling, likely by a mechanism involving the oxidization of Fe2+ from the iron exporter ferroportin 1 for delivery to the circulating Fe3+ carrier transferrin. Hephaestin (HEPH), the only MCF known to be expressed in enterocytes, aids in the basolateral transfer of dietary iron to the blood. Mice lacking HEPH in the whole body (Heph-/-) or intestine alone (Hephint/int) exhibit defects in dietary iron absorption but still survive and grow. Circulating ceruloplasmin (CP) is the only other known MCF likely to interact with enterocytes. Our aim was to assess the effects of combined deletion of HEPH and CP on intestinal iron absorption and homeostasis in mice. Methods Mice lacking both HEPH and CP (Heph-/-Cp-/-) and mice with whole-body knockout of CP and intestine-specific deletion of HEPH (Hephint/intCp-/-) were generated and phenotyped. Results Heph-/-Cp-/- mice were severely anemic and had low serum iron, but they exhibited marked iron loading in duodenal enterocytes, the liver, heart, pancreas, and other tissues. Hephint/intCp-/- mice were moderately anemic (similar to Cp-/- mice) but were iron loaded only in the duodenum and liver, as in Hephint/int and Cp-/- mice, respectively. Both double knockout models absorbed iron in radiolabeled intestinal iron absorption studies, but the iron was inappropriately distributed, with an abnormally high percentage retained in the liver. Conclusions These studies indicate that HEPH and CP, and likely MCFs in general, are not essential for intestinal iron absorption but are required for proper systemic iron distribution. They also point to important extra-intestinal roles for HEPH in maintaining whole-body iron homeostasis.
Graphical abstract
Databáze: OpenAIRE