Zebrafish enpp1 mutants exhibit pathological mineralization, mimicking features of generalized arterial calcification of infancy (GACI) and pseudoxanthoma elasticum (PXE)

被引:57
作者
Apschner, Alexander [1 ,2 ]
Huitema, Leonie F. A. [1 ,2 ]
Ponsioen, Bas [1 ,2 ]
Peterson-Maduro, Josi [1 ,2 ]
Schulte-Merker, Stefan [1 ,2 ,3 ,4 ]
机构
[1] Hubrecht Inst KNAW, NL-3548 CT Utrecht, Netherlands
[2] UMC Utrecht, NL-3548 CT Utrecht, Netherlands
[3] WUR, NL-3700 AH Wageningen, Netherlands
[4] Univ Munster, Fac Med, Inst Cardiovasc Organogenesis & Regenerat, D-48149 Munster, Germany
关键词
Zebrafish; Ectopic mineralization; Generalized arterial calcification of infancy; GACI; Pseudoxanthoma elasticum; PXE; Pyrophosphate; HOMOZYGOUS MISSENSE MUTATION; BONE-FORMATION; OSTEOPONTIN; OSTEOCLASTS; OSTEOBLASTS; NOTOCHORD; DEPOSITION; EXPRESSION; INFLAMMATION; OSTEOPOROSIS;
D O I
10.1242/dmm.015693
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In recent years it has become clear that, mechanistically, biomineralization is a process that has to be actively inhibited as a default state. This inhibition must be released in a rigidly controlled manner in order for mineralization to occur in skeletal elements and teeth. A central aspect of this concept is the tightly controlled balance between phosphate, a constituent of the biomineral hydroxyapatite, and pyrophosphate, a physiochemical inhibitor of mineralization. Here, we provide a detailed analysis of a zebrafish mutant, dragonfish (dgf), which is mutant for ectonucleoside pyrophosphatase/phosphodiesterase 1 (Enpp1), a protein that is crucial for supplying extracellular pyrophosphate. Generalized arterial calcification of infancy (GACI) is a fatal human disease, and the majority of cases are thought to be caused by mutations in ENPP1. Furthermore, some cases of pseudoxanthoma elasticum (PXE) have recently been linked to ENPP1. Similar to humans, we show here that zebrafish enpp1 mutants can develop ectopic calcifications in a variety of soft tissues - most notably in the skin, cartilage elements, the heart, intracranial space and the notochord sheet. Using transgenic reporter lines, we demonstrate that ectopic mineralizations in these tissues occur independently of the expression of typical osteoblast or cartilage markers. Intriguingly, we detect cells expressing the osteoclast markers Trap and CathepsinK at sites of ectopic calcification at time points when osteoclasts are not yet present in wild-type siblings. Treatment with the bisphosphonate etidronate rescues aspects of the dgf phenotype, and we detected deregulated expression of genes that are involved in phosphate homeostasis and mineralization, such as fgf23, npt2a, entpd5 and spp1 (also known as osteopontin). Employing a UAS-GalFF approach, we show that forced expression of enpp1 in blood vessels or the floorplate of mutant embryos is sufficient to rescue the notochord mineralization phenotype. This indicates that enpp1 can exert its function in tissues that are remote from its site of expression.
引用
收藏
页码:811 / 822
页数:12
相关论文
共 73 条
  • [1] Evidence of Enhanced Expression of Osteopontin in Spinal Hyperostosis of the Twy Mouse
    Aiba, Atsuomi
    Nakajima, Arata
    Okawa, Akihiko
    Koda, Masao
    Yamazaki, Masashi
    [J]. SPINE, 2009, 34 (16) : 1644 - 1649
  • [2] Genetic dissection of neural circuits by Tol2 transposon-mediated Gal4 gene and enhancer trapping in zebrafish
    Asakawa, Kazuhide
    Suster, Maximiliano L.
    Mizusawa, Kanta
    Nagayoshi, Saori
    Kotani, Tomoya
    Urasaki, Akihiro
    Kishimoto, Yasuyuki
    Hibi, Masahiko
    Kawakami, Koichi
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (04) : 1255 - 1260
  • [3] Harnessing a high cargo-capacity transposon for genetic applications in vertebrates
    Balciunas, Darius
    Wangensteen, Kirk J.
    Wilber, Andrew
    Bell, Jason
    Geurts, Aron
    Sivasubbu, Sridhar
    Wang, Xin
    Hackett, Perry B.
    Largaespada, David A.
    McIvor, R. Scott
    Ekker, Stephen C.
    [J]. PLOS GENETICS, 2006, 2 (11): : 1715 - 1724
  • [4] Bancroft J. S. A., 1996, THEORY PRACTICE HIST, P127
  • [5] Bancroft J. S. A., 1996, THEORY PRACTICE HIST, P332
  • [6] Reversibility of calcitriol-induced medial artery calcification in rats with intact renal function
    Bas, A
    Lopez, I
    Perez, J
    Rodriguez, M
    Aguilera-Tejero, E
    [J]. JOURNAL OF BONE AND MINERAL RESEARCH, 2006, 21 (03) : 484 - 490
  • [7] Genetic and cellular analyses of zebrafish atrioventricular cushion and valve development
    Beis, D
    Bartman, T
    Jin, SW
    Scott, IC
    D'Amico, LA
    Ober, EA
    Verkade, H
    Frantsve, J
    Field, HA
    Wehman, A
    Baier, H
    Tallafuss, A
    Bally-Cuif, L
    Chen, JN
    Stainier, DYR
    Jungblut, B
    [J]. DEVELOPMENT, 2005, 132 (18): : 4193 - 4204
  • [8] Distinct patterns of notochord mineralization in zebrafish coincide with the localization of Osteocalcin isoform 1 during early vertebral centra formation
    Bensimon-Brito, Anabela
    Cardeira, Joao
    Cancela, Maria Leonor
    Huysseune, Ann
    Witten, Paul Eckhard
    [J]. BMC DEVELOPMENTAL BIOLOGY, 2012, 12
  • [9] Brand Michael, 2002, P7
  • [10] Rapid BAC selection for tol2-mediated transgenesis in zebrafish
    Bussmann, Jeroen
    Schulte-Merker, Stefan
    [J]. DEVELOPMENT, 2011, 138 (19): : 4327 - 4332