Impoverished Conceptions of Gene Causation and Therapy in Developmental Neurology
Juan M Pascual1, Vikram Jakkamsetti2, Ignacio Málaga2
1Rare Brain Disorders Program, Department of Neurology, The University of Texas Southwestern Medical Center, Dallas, Texas; Department of Physiology, The University of Texas Southwestern Medical Center, Dallas, Texas; Department of Pediatrics, The University of Texas Southwestern Medical Center, Dallas, Texas; Eugene McDermott Center for Human Growth & Development/Center for Human Genetics, The University of Texas Southwestern Medical Center, Dallas, Texas.
Abstract:
We offer a primer to the modifiability of genetic neurological disease, particularly during development. One goal is to harness several unexpected observations made in the course of experimental gene modification or therapy into an explanatory conceptual context based on biological first principles. To this end, we anchor growing, disparate reports of unusual or untoward effects to a plausible framework wherein genes exhibit different degrees of modifiability and may result, when mutated or therapeutically modified, in unsuspected consequences. We propose that genetic pathogenic variant effects and modifiability depend on the number and complexity of associated protein-protein or higher-order interactions. Thus, gene malleability may range from that characteristic of the favorably modifiable primarily structural genes that subserve relatively invariant or circumscribed phenomena such as cell shape to that typical of some transcription factors, which are less functionally predictable when altered. The latter may be expressed developmentally, in compartmentalized manner, or only intermittently and yet exert vastly ramified influences sometimes circumscribed only to select species. We also argue that genetic diseases may steer the organism toward often poorly understood biological end points and co-opt multiple processes into hardly modifiable biology. Addition or modification of genes to approximate a normal state not previously experienced by the organism may lead to further aberration due to extraneous interference with the native biology of the disease state. Therefore, an understanding as perspicuous as possible of gene function, regulation, modifiability, and biological directionality down to seemingly minute but disease-relevant consequences is a prerequisite to intervention. Although we provide some groundwork steps to such an understanding, this may occasionally prove unattainable.
Insights
Genetic neurological diseases are modifiable, but gene effects depend on interaction complexity. Interventions require deep understanding to avoid unintended consequences and ensure therapeutic success.
Area of Science:
- Genetics
- Developmental Biology
- Neuroscience
Background:
- Genetic neurological diseases present complex challenges for therapeutic intervention.
- Experimental gene modification and therapy have yielded unexpected observations regarding gene behavior.
Purpose of the Study:
- To provide a conceptual framework for understanding the modifiability of genes in neurological diseases.
- To explain unusual or adverse effects observed during gene modification based on biological principles.
Main Methods:
- Reviewing and synthesizing disparate reports on gene modification effects.
- Developing a theoretical model based on gene-protein interactions and complexity.
- Analyzing gene malleability in relation to structural genes versus transcription factors.
Main Results:
- Genes exhibit varying degrees of modifiability, influenced by the complexity of their associated protein interactions.
- Mutated or modified genes can lead to unpredictable consequences, especially transcription factors with ramified influences.
- Genetic diseases can redirect biological processes, making them resistant to modification.
Conclusions:
- A comprehensive understanding of gene function, regulation, and interaction complexity is crucial for effective intervention in genetic diseases.
- Altering genes to achieve a normal state may disrupt native disease biology, potentially causing further aberrations.
- Intervention strategies must consider the intricate biological context and potential for unforeseen outcomes.
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