Role of lipids in the control of autophagy and primary cilium signaling in neurons

Author:

Hernández-Cáceres María Paz12,Pinto-Nuñez Daniela2,Rivera Patricia23,Burgos Paulina2,Díaz-Castro Francisco23,Criollo Alfredo145,Yañez Maria Jose2ORCID,Morselli Eugenia25ORCID

Affiliation:

1. Instituto de Investigación en Ciencias Odontológicas (ICOD), Facultad de Odontología, Universidad de Chile, Santiago, Chile

2. Department of Basic Sciences, Faculty of Medicine and Science, Universidad San Sebastián, Santiago, Chile

3. Physiology Department, Faculty of Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile

4. Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile

5. Autophagy Research Center, Santiago, Chile

Abstract

Abstract The brain is, after the adipose tissue, the organ with the greatest amount of lipids and diversity in their composition in the human body. In neurons, lipids are involved in signaling pathways controlling autophagy, a lysosome-dependent catabolic process essential for the maintenance of neuronal homeostasis and the function of the primary cilium, a cellular antenna that acts as a communication hub that transfers extracellular signals into intracellular responses required for neurogenesis and brain development. A crosstalk between primary cilia and autophagy has been established; however, its role in the control of neuronal activity and homeostasis is barely known. In this review, we briefly discuss the current knowledge regarding the role of autophagy and the primary cilium in neurons. Then we review the recent literature about specific lipid subclasses in the regulation of autophagy, in the control of primary cilium structure and its dependent cellular signaling in physiological and pathological conditions, specifically focusing on neurons, an area of research that could have major implications in neurodevelopment, energy homeostasis, and neurodegeneration.

Publisher

Medknow

Subject

Developmental Neuroscience

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