Related Experiment Video
Updated: Apr 24, 2026

In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
A polyadenylation site variant causes transcript-specific BMP1 deficiency and frequent fractures in children
Somayyeh Fahiminiya1, Hadil Al-Jallad2, Jacek Majewski1
1Department of Human Genetics, McGill University, Montréal, QC, Canada H3A 1B1.
Insights
Isolated lack of the BMP1-1 protein causes pediatric bone fragility, characterized by fractures and mineralization defects. This genetic finding identifies a new cause of childhood bone disease.
Area of Science:
- Genetics
- Biochemistry
- Pediatric Orthopedics
Background:
- Previously identified a pediatric bone fragility disorder with fractures and bone mineralization defects.
- The disorder affects bone tissue but not the growth plate.
Purpose of the Study:
- To identify the genetic cause of a bone fragility disorder in four children.
- To investigate the functional consequences of identified genetic variants.
Main Methods:
- Whole-exome sequencing was performed on four unrelated individuals.
- Skin fibroblasts were analyzed for BMP1-1 transcript and protein levels.
- Procollagen type I C-propeptide cleavage was assessed.
- Bone mineral density and histomorphometry were evaluated.
Main Results:
- Three individuals were homozygous for a BMP1 3'UTR variant (c.*241T>C), leading to reduced BMP1-1.
- The fourth individual had compound heterozygous variants affecting BMP1-1 and BMP1-3.
- Impaired procollagen type I C-propeptide cleavage was observed in all individuals.
- Bone analysis revealed delayed mineralization onset and hypermineralization.
Conclusions:
- Isolated deficiency of the BMP1-1 isoform causes bone fragility in children.
- BMP1-1 plays a critical role in bone mineralization and collagen processing.
Abstract:
We had previously published the clinical characteristics of a bone fragility disorder in children that was characterized mainly by lower extremity fractures and a mineralization defect in bone tissue but not on the growth plate level. We have now performed whole-exome sequencing on four unrelated individuals with this phenotype. Three individuals were homozygous for a nucleotide change in BMP1, affecting the polyadenylation signal of the transcript that codes for the short isoform of BMP1 (BMP1-1) (c.*241T>C). In skin fibroblasts of these individuals, we found low levels of BMP1-1 transcript and protein. The fourth individual was compound heterozygous for the c.*241T>C variant in BMP1-1 and a variant in BMP1 exon 15 (c.2107G>C) that affected splicing in both BMP1-1 and the long isoform of BMP1 (BMP1-3). Both the homozygous 3'UTR variant and the compound heterozygous variants were associated with impaired procollagen type I C-propeptide cleavage, as the amount of free C-propeptide in the supernatant of skin fibroblasts was less than in controls. Peripheral quantitative computed tomography showed that all individuals had elevated volumetric cortical bone mineral density. Assessment of iliac bone samples by histomorphometry and quantitative backscattered electron imaging indicated that the onset of mineralization at bone formation sites was delayed, but that mineralized matrix was hypermineralized. These results show that isolated lack of BMP1-1 causes bone fragility in children.
Related Concept Videos
Alternative RNA Splicing
There are five types of alternative RNA splicing that vary in the ways the pre-mRNA segments are removed or retained in the mature mRNA. The first...
RNA Splicing
Translation
Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of...
Translation
Translation Produces the Building Blocks of Life
Proteins are...
RNA Editing
Bone Disorders
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...

