TY - JOUR
T1 - The third case of TNFRSF11A-associated dysosteosclerosis with a mutation producing elongating proteins
AU - Xue, Jing Yi
AU - Wang, Zheng
AU - Smithson, Sarah F.
AU - Burren, Christine P.
AU - Matsumoto, Naomichi
AU - Nishimura, Gen
AU - Ikegawa, Shiro
AU - Guo, Long
N1 - Publisher Copyright:
© 2020, The Author(s), under exclusive licence to The Japan Society of Human Genetics.
PY - 2021/4
Y1 - 2021/4
N2 - Dysosteosclerosis (DOS) is a distinct form of sclerosing bone disease characterized by platyspondyly and progressive osteosclerosis. DOS is genetically heterogeneous. Three causal genes, SLC29A3, CSF1R, and TNFRSF11A are reported. TNFRSF11A-associated DOS has been identified in two patients; however, TNFRSF11A is also a causal gene for osteopetrosis, autosomal recessive 7 (OP-AR7). Whole-exome sequencing in a patient with sclerosing bone disease identified novel compound heterozygous variants (c.414_427 + 7del, c.1664del) in TNFRSF11A. We examined the impact of the two variants on five splicing isoforms of TNFRSF11A by RT-PCR. We found that c.1664del resulted in elongated proteins (p.S555Cfs*121, etc.), while c.414_427 + 7del generated two aberrant splicing products (p.A139Wfs*19 and p.E132Dfs*19) that lead to nonsense mediated mRNA decay (NMD). In the previous two cases of TNFRSF11A-associated DOS, their mutations produced truncated TNFRSF11A protein isoforms. The mutations in all three cases thus contrast with TNFRSF11A mutations reported in OP-AR7, which does not generated truncated or elongated TNFRSF11A proteins. Thus, we identified the third case of TNFRSF11A-associated DOS and reinforced the genotype–phenotype correlation that aberrant protein-producing TNFRSF11A mutations cause DOS.
AB - Dysosteosclerosis (DOS) is a distinct form of sclerosing bone disease characterized by platyspondyly and progressive osteosclerosis. DOS is genetically heterogeneous. Three causal genes, SLC29A3, CSF1R, and TNFRSF11A are reported. TNFRSF11A-associated DOS has been identified in two patients; however, TNFRSF11A is also a causal gene for osteopetrosis, autosomal recessive 7 (OP-AR7). Whole-exome sequencing in a patient with sclerosing bone disease identified novel compound heterozygous variants (c.414_427 + 7del, c.1664del) in TNFRSF11A. We examined the impact of the two variants on five splicing isoforms of TNFRSF11A by RT-PCR. We found that c.1664del resulted in elongated proteins (p.S555Cfs*121, etc.), while c.414_427 + 7del generated two aberrant splicing products (p.A139Wfs*19 and p.E132Dfs*19) that lead to nonsense mediated mRNA decay (NMD). In the previous two cases of TNFRSF11A-associated DOS, their mutations produced truncated TNFRSF11A protein isoforms. The mutations in all three cases thus contrast with TNFRSF11A mutations reported in OP-AR7, which does not generated truncated or elongated TNFRSF11A proteins. Thus, we identified the third case of TNFRSF11A-associated DOS and reinforced the genotype–phenotype correlation that aberrant protein-producing TNFRSF11A mutations cause DOS.
UR - https://www.scopus.com/pages/publications/85092361171
U2 - 10.1038/s10038-020-00831-8
DO - 10.1038/s10038-020-00831-8
M3 - 文章
C2 - 33037392
AN - SCOPUS:85092361171
SN - 1434-5161
VL - 66
SP - 371
EP - 377
JO - Journal of Human Genetics
JF - Journal of Human Genetics
IS - 4
ER -