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Published on: October 27, 2020
Function of cytokines within the TGF-beta superfamily as determined from transgenic and gene knockout studies in mice
Ashok B Kulkarni1, Tamizchelvi Thyagarajan, John J Letterio
1Functional Genomics Unit, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA. ak40m@.nih.gov
Abstract:
Several major conceptual problems regarding specific in vivo functions of the TGF-beta family members remain the key focus of many researchers studying the biology of these secreted signaling molecules. More than 45 members of this family of growth factors have been identified and partially characterized for their molecular roles in numerous processes such as cell proliferation and differentiation, embryonic development, carcinogenesis, immune dysfunction, inflammation and wound healing. The high degree of similarity that exists at the structural level among the isoforms of these growth factors is accompanied by a significant overlap in function, as defined by many in vitro model systems and in vivo systems involving administration of exogenous ligand or of ligand-specific blocking antibodies. The ability to discern the critical functions of these molecules based on patterns of expression has also often been quite difficult. The evolution of more sophisticated functional genomics approaches has been recently instrumental in generating unique perspectives into the mechanisms governing the activity of the members of the TGF-beta family. The studies outlined in this review are significant in that they not only support working hypotheses regarding the activities of TGF-beta generated through extensive in vitro studies but also raise new questions regarding the role of each isoform in numerous processes. With the rapid advances in these approaches to probe activity in a more cell and time-dependent fashion, we will gain valuable insights for designing approaches for targeting the complex cellular pathways mediating their responses and will also help us develop novel therapies to treat disease processes.
Insights
Understanding the complex roles of the Transforming Growth Factor-beta (TGF-beta) family in vivo is crucial. Advanced functional genomics offer new insights into TGF-beta signaling pathways for therapeutic development.
Area of Science:
- Molecular Biology
- Cell Signaling
- Genomics
Background:
- The Transforming Growth Factor-beta (TGF-beta) family comprises over 45 secreted signaling molecules with critical roles in cell proliferation, differentiation, development, and disease.
- Structural similarities and functional overlaps among TGF-beta isoforms complicate the elucidation of their specific in vivo functions.
- Discerning isoform-specific roles based on expression patterns has been challenging due to complex signaling networks.
Purpose of the Study:
- To review recent advances in functional genomics for understanding TGF-beta family member activities.
- To explore how novel approaches provide insights into the mechanisms governing TGF-beta signaling.
- To highlight the significance of these studies in supporting existing hypotheses and generating new research questions.
Main Methods:
- Review of functional genomics approaches.
- Analysis of in vitro and in vivo experimental systems.
- Examination of cell and time-dependent activity probing.
Main Results:
- Functional genomics provide unique perspectives into TGF-beta family mechanisms.
- Studies support hypotheses derived from in vitro work and raise new questions about isoform-specific roles.
- Advanced methods enable cell and time-dependent analysis of TGF-beta activity.
Conclusions:
- Sophisticated functional genomics are essential for deciphering TGF-beta isoform functions.
- Understanding TGF-beta signaling pathways is key to developing targeted therapies.
- Future research will leverage these approaches to advance disease treatment strategies.
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