The genetic pleiotropy of musculoskeletal aging
Open Access
- 1 January 2012
- journal article
- review article
- Published by Frontiers Media SA in Frontiers in Physiology
- Vol. 3, 28691
- https://doi.org/10.3389/fphys.2012.00303
Abstract
Musculoskeletal aging is detrimental to multiple bodily functions and starts early, probably in the fourth decade of an individual's life. Sarcopenia is a health problem that is expected to only increase as a greater portion of the population lives longer; prevalence of the related musculoskeletal diseases is similarly expected to increase. Unraveling the biological and biomechanical associations and molecular mechanisms underlying these diseases represents a formidable challenge. There are two major problems making disentangling the biological complexity of musculoskeletal aging difficult: (a) it is a systemic, rather than “compartmental,” problem, which should be approached accordingly, and (b) the aging per se is neither well defined nor reliably measurable. A unique challenge of studying any age-related condition is a need of distinguishing between the “norm” and “pathology,” which are interwoven throughout the aging organism. We argue that detecting genes with pleiotropic functions in musculoskeletal aging is needed to provide insights into the potential biological mechanisms underlying inter-individual differences insusceptibility to the musculoskeletal diseases. However, exploring pleiotropic relationships among the system's components is challenging both methodologically and conceptually. We aimed to focus on genetic aspects of the cross-talk between muscle and its “neighboring” tissues and organs (tendon, bone, and cartilage), and to explore the role of genetics to find the new molecular links between skeletal muscle and other parts of the “musculoskeleton.” Identification of significant genetic variants underlying the musculoskeletal system's aging is now possible more than ever due to the currently available advanced genomic technologies. In summary, a “holistic” genetic approach is needed to study the systems's normal functioning and the disease predisposition in order to improve musculoskeletal health.Keywords
This publication has 99 references indexed in Scilit:
- Genetic variation at the low-density lipoprotein receptor-related protein 5 (LRP5) locus modulates Wnt signaling and the relationship of physical activity with bone mineral density in menBone, 2007
- C-type natriuretic peptide regulates endochondral bone growth through p38 MAP kinase-dependent and – independent pathwaysBMC Developmental Biology, 2007
- Robust and Comprehensive Analysis of 20 Osteoporosis Candidate Genes by Very High-Density Single-Nucleotide Polymorphism Screen Among 405 White Nuclear Families Identified Significant Association and Gene–Gene InteractionJournal of Bone and Mineral Research, 2006
- Expression profiling of metalloproteinases and tissue inhibitors of metalloproteinases in normal and degenerate human achilles tendonArthritis & Rheumatism, 2006
- Is visceral obesity the cause of the metabolic syndrome?Annals of Medicine, 2006
- The relationship between serum resistin, leptin, adiponectin, ghrelin levels and bone mineral density in middle‐aged menClinical Endocrinology, 2005
- Bone Morphogenetic ProteinsGrowth Factors, 2004
- Advanced sequencing technologies: methods and goalsNature Reviews Genetics, 2004
- Inclusion body myopathy associated with Paget disease of bone and frontotemporal dementia is caused by mutant valosin-containing proteinNature Genetics, 2004
- Linkage of Osteoporosis to Chromosome 20p12 and Association to BMP2PLoS Biology, 2003