| Literature DB >> 27871226 |
Florian Job1, Shuji Mizumoto2, Laurie Smith3, Natario Couser3, Ashley Brazil4, Howard Saal4, Melanie Patterson5, Margaret I Gibson5, Sarah Soden6, Neil Miller7, Isabelle Thiffault5, Carol Saunders5, Shuhei Yamada2, Katrin Hoffmann1, Kazuyuki Sugahara8,9, Emily Farrow10,11.
Abstract
BACKGROUND: A new disease class of syndromes, described as linkeropathies, which are derived from defects in the glycosaminoglycan-linker region as well as glycosaminoglycan-side chains of proteoglycans is increasingly being recognized as a cause of human disease. Proteoglycans are an essential component of the extracellular matrix. Defects in the enzymatic process of proteoglycan synthesis broadly occur due to the incorrect addition of side chains. Previously, homozygous missense variants within the B3GAT3 gene encoding beta 1,3 glucuronyltransferase 3(GlcAT-I) responsible for the biosynthesis of glycosaminoglycans have been described in 7 individuals. CASEEntities:
Keywords: B3GAT3; Glucuronyltransferase-I; Glycosaminoglycan; Linkeropathy; Proteoglycan
Mesh:
Substances:
Year: 2016 PMID: 27871226 PMCID: PMC5117547 DOI: 10.1186/s12881-016-0344-9
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Fig. 1a X-rays revealed severely diffusely demineralized bones, along with multiple growth arrests lines. Stabilization rods are in both femurs and bilateral bowing of the tibiae and fibulae are evident (right pictured). b Cmh000720 is mildly dysmorphic with downslanting palpebral fissures (left), short neck, and curved lower extremities. While able to ambulate with a walker and physical assistance, he is wheelchair-bound. c mRNA expression of B3GAT3 in primary fibroblasts in cmh000720 was not statistically different from control using two sets of primers, whereas western blotting (d) showed a decrease in overall protein. e Glucuronyltransferase activity was determined by incorporation of [14C]GlcA into the Galβ1-3Galβ1-O-methyl. The control sample utilized an enzyme source from the fibroblasts from a healthy control subject. *P < 0.0001
Fig. 2a Glucuronyltransferase activity of each enzyme protein was examined using the partially purified recombinant enzymes, UDP-[14C]-GlcA as the donor substrate, and Galβ1-3Galβ1-O-methyl as the acceptor substrate. Glucuronyltransferase activity was determined by incorporation of [14C]GlcA into the Galβ1-3Galβ1-O-methyl. “Mock” indicates the enzyme source from the HEK293T cells transfected with an empty vector. Values are the means ± SE (n = 3). *P < 0.0005 versus wild-type was calculated by the ANOVA Dunnett test. Two sets of the mutant enzyme, L224Q, were prepared from two separate conditioned media from the HEK293T cell cultures (left). The purified recombinant GlcAT-I separated by SDS-PAGE was detected with the horseradish peroxidase-conjugated anti-FLAG antibody (Wako). The broad signals of the FLAG-tagged GlcAT-I may indicate the N-glycosylated enzymes (~40 kDa). Western blotting analysis showed the expression of comparable amounts of these recombinant proteins. (right). b The GFP-tagged GlcAT-I and its mutant proteins separated by SDS-PAGE were detected with anti-GFP antibody and the horseradish peroxidase-conjugated anti-mouse IgG antibody as the primary and secondary antibodies, respectively. The deduced molecular masses of GFP-tagged wild-type GlcAT-I and the mutant proteins (mutants #1 ~ 8) were summarized in Additional file 1: Table S2. Although no obvious mutant proteins (No. 1 ~ 3, 7, and 8) of GlcAT-I were detected, GFP-tagged mutant proteins, #4 as well as #5 or 6, were clearly detected. Predicted molecular weights of the bands of #5 and #6 were 40.2 and 31.3 kDa, respectively (Additional file 1: Table S2). The GFP-tagged mutant protein #5 or 6 was detected at a molecular weight of ~ 30 kDa, suggesting that the observed GFP-tagged mutant protein might be mutant-#6 rather than mutant-#5. c Comparison of the amount of CS chains on the cell surface of fibroblasts from the patient and a healthy control by cell-based ELISA. *P < 0.0001