Hereditary xanthinuria (HXAN) is a rare metabolic disorder that results from mutations in either the xanthine dehydrogenase (XDH) or the molybdenum cofactor sulfurase genes (MOCOS), respectively defining HXAN type I and type II. Hypouricemia, hypouricosuria, and abnormally high plasma and urine levels of xanthine, causing susceptibility to xanthine nephrolithiasis and deposition of xanthine crystals in tissues, are the metabolic hallmarks of HXAN. Several pathogenic variants in the XDH gene have so far been identified in patients with HXAN type I, but the clinical phenotype associated with the whole deletion of the human XDH gene is unknown. Herein, we report the case of a woman diagnosed with HXAN, whose molecular genetic testing revealed a homozygous microdeletion involving the XDH gene. Distinctive features of her medical history were the diagnosis of arterial hypertension and microalbuminuria at 22 years of age; a single pregnancy at the age of 25, complicated by proteinuria and transient kidney function deterioration in the third trimester; unexplained severe hypouricemia incidentally discovered during pregnancy; inability to breastfeed her newborn daughter due to primary agalactia; chronic kidney disease (CKD) stage 3 diagnosed at age 35; and progression to end-stage kidney disease over the next 12 years. Protocol noninvasive laboratory and imaging investigation was not informative as to the cause of CKD. This is the first description of the clinical phenotype associated with a natural knockout of the human XDH gene. Despite the lack of kidney histopathology data, the striking similarities with the phenotypes exhibited by comparable murine models validate the latter as useful sources of mechanistic insights for the pathogenesis of the human disease, supporting the hypothesis that the absence of xanthine dehydrogenase activity might represent a susceptibility factor for chronic tubulointerstitial nephritis, even in patients without kidney stones.

1.
Dent
CE
,
Philpot
GR
.
Xanthinuria
.
Lancet
.
1954
;
263
(
6804
):
182
5
.
2.
Simmonds
H
.
Hereditary xanthinuria. Orphanet encyclopedia. 2003
. Available from: http://www.orpha.net/data/patho/GB/uk-XDH.pdf.
3.
Ichida
K
,
Amaya
Y
,
Kamatani
N
,
Nishino
T
,
Hosoya
T
,
Sakai
O
.
Identification of two mutations in human xanthine dehydrogenase gene responsible for classical type I xanthinuria
.
J Clin Invest
.
1997
;
99
(
10
):
2391
7
.
4.
Ichida
K
,
Matsumura
T
,
Sakuma
R
,
Hosoya
T
,
Nishino
T
.
Mutation of human molybdenum cofactor sulfurase gene is responsible for classical xanthinuria type II
.
Biochem Biophys Res Commun
.
2001
;
282
(
5
):
1194
200
.
5.
Sebesta
I
,
Stiburkova
B
,
Krijt
J
.
Hereditary xanthinuria is not so rare disorder of purine metabolism
.
Nucleosides Nucleotides Nucleic Acids
.
2018
;
37
(
6
):
324
8
.
6.
Ichida
K
,
Amaya
Y
,
Okamoto
K
,
Nishino
T
.
Mutations associated with functional disorder of xanthine oxidoreductase and hereditary xanthinuria in humans
.
Int J Mol Sci
.
2012
;
13
(
11
):
15475
95
.
7.
Iguchi
A
,
Sato
T
,
Yamazaki
M
,
Tasaki
K
,
Suzuki
Y
,
Iino
N
, et al
.
A case of xanthinuria type I with a novel mutation in xanthine dehydrogenase
.
CEN Case Rep
.
2016
;
5
(
2
):
158
62
.
8.
Peretz
H
,
Lagziel
A
,
Bittner
F
,
Kabha
M
,
Shtauber-Naamati
M
,
Zhuravel
V
, et al
.
Classical xanthinuria in nine Israeli families and two isolated cases from Germany: molecular, biochemical and population genetics aspects
.
Biomedicines
.
2021
;
9
(
7
):
788
.
9.
Mraz
M
,
Hurba
O
,
Bartl
J
,
Dolezel
Z
,
Marinaki
A
,
Fairbanks
L
, et al
.
Modern diagnostic approach to hereditary xanthinuria
.
Urolithiasis
.
2015
;
43
(
1
):
61
7
.
10.
Ohtsubo
T
,
Matsumura
K
,
Sakagami
K
,
Fujii
K
,
Tsuruya
K
,
Noguchi
H
, et al
.
Xanthine oxidoreductase depletion induces renal interstitial fibrosis through aberrant lipid and purine accumulation in renal tubules
.
Hypertension
.
2009
;
54
(
4
):
868
76
.
11.
Ohtsubo
T
,
Rovira
II
,
Starost
MF
,
Liu
C
,
Finkel
T
.
Xanthine oxidoreductase is an endogenous regulator of cyclooxygenase-2
.
Circ Res
.
2004
;
95
(
11
):
1118
24
.
12.
Hosoyamada
M
,
Tomioka
NH
,
Ohtsubo
T
,
Ichida
K
.
Xanthine oxidoreductase knockout mice with high HPRT activity were not rescued by NAD + replenishment
.
Nucleosides Nucleotides Nucleic Acids
.
2020
;
39
(
10–12
):
1465
73
.
13.
Vorbach
C
,
Scriven
A
,
Capecchi
MR
.
The housekeeping gene xanthine oxidoreductase is necessary for milk fat droplet enveloping and secretion: gene sharing in the lactating mammary gland
.
Genes Dev
.
2002
;
16
(
24
):
3223
35
.
14.
Mandal
AK
,
Mount
DB
.
The molecular physiology of uric acid homeostasis
.
Annu Rev Physiol
.
2015
;
77
(
1
):
323
45
.
15.
Kratzer
JT
,
Lanaspa
MA
,
Murphy
MN
,
Cicerchi
C
,
Graves
CL
,
Tipton
PA
, et al
.
Evolutionary history and metabolic insights of ancient mammalian uricases
.
Proc Natl Acad Sci U S A
.
2014
;
111
(
10
):
3763
8
.
16.
Alvarez-Lario
B
,
Macarron-Vicente
J
.
Uric acid and evolution
.
Rheumatology
.
2010
;
49
(
11
):
2010
5
.
17.
Yeum
K-J
,
Russell
RM
,
Krinsky
NI
,
Aldini
G
.
Biomarkers of antioxidant capacity in the hydrophilic and lipophilic compartments of human plasma
.
Arch Biochem Biophys
.
2004
;
430
(
1
):
97
103
.
18.
Ndrepepa
G
.
Uric acid and cardiovascular disease
.
Clin Chim Acta
.
2018
;
484
:
150
63
.
19.
Cantu-Medellin
N
,
Kelley
EE
.
Xanthine oxidoreductase-catalyzed reactive species generation: a process in critical need of reevaluation
.
Redox Biol
.
2013
;
1
(
1
):
353
8
.
20.
Sautin
YY
,
Johnson
RJ
.
Uric acid: the oxidant-antioxidant paradox
.
Nucleosides Nucleotides Nucleic Acids
.
2008
;
27
(
6
):
608
19
.
21.
Piret
SE
,
Esapa
CT
,
Gorvin
CM
,
Head
R
,
Loh
NY
,
Devuyst
O
, et al
.
A mouse model of early-onset renal failure due to a xanthine dehydrogenase nonsense mutation
.
PLoS One
.
2012
;
7
(
9
):
e45217
.
22.
Vinhas
J
,
Aires
I
,
Batista
C
,
Branco
P
,
Brandão
J
,
Nogueira
R
, et al
.
RENA study: cross-sectional study to evaluate CKD prevalence in Portugal
.
Nephron
.
2020
;
144
(
10
):
479
87
.
23.
Aksoy
GK
,
Koyun
M
,
Ichida
K
,
Comak
E
,
Akman
S
.
Renal stone and chronic kidney failure associated with hypouricemia: answers
.
Pediatr Nephrol
.
2019
;
34
(
7
):
1225
7
.
You do not currently have access to this content.