Carbon Recycling into De Novo Lipogenesis is a Major Pathway in Neonatal Metabolism of Linoleate and Alpha-linolenate
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Recent reports indicate that recycling of the beta-oxidized carbon skeleton of linoleate and alpha-linolenate into newly synthesized cholesterol and fatty acids in the brain is quantitatively significant in both suckling rats and pre- and postnatally in rhesus monkeys. The recycling appears to occur via ketones which are not only readily produced from these 18 carbon polyunsaturates but are also the main lipogenic precursors for the developing mammalian brain. Since the neonatal rat brain appears not to acquire cholesterol or long chain saturated or monounsaturated fatty acids from the circulation, ketones and ketogenic precursors seem to be crucial for normal brain synthesis of these lipids. Cholesterol is plentiful in brain membranes and it has also been discovered to be the essential lipid adduct of the 'hedgehog' family of proteins, the appropriate expression of which determines normal embryonic tissue patterning and neurological development. Insufficient cholesterol or inappropriate expression of 'sonic hedgehog' has major adverse neurodevelopmental consequences typified in humans by Smith-Lemli-Optiz syndrome. Hence, we propose that the importance of alpha-linolenate and linoleate for normal neural development arises not only from being precursors to longer chain polyunsaturates incorporated into neuronal membranes but, perhaps equally importantly, by being ketogenic precursors needed for in situ brain lipid synthesis.
Ding Z, Chen J, Li B, Ji X Front Endocrinol (Lausanne). 2024; 15:1446863.
PMID: 39257908 PMC: 11384989. DOI: 10.3389/fendo.2024.1446863.
Iwasa K, Yamamoto S, Yamashina K, Yagishita-Kyo N, Maruyama K, Awaji T J Neuroinflammation. 2021; 18(1):304.
PMID: 34961526 PMC: 8711188. DOI: 10.1186/s12974-021-02361-2.
Lawrence G Adv Nutr. 2021; 12(3):647-656.
PMID: 33693484 PMC: 8166560. DOI: 10.1093/advances/nmab013.
Robinson H, Barrett H, Gomez-Arango L, McIntyre H, Callaway L, Nitert M Nutrients. 2019; 11(8).
PMID: 31398880 PMC: 6723895. DOI: 10.3390/nu11081836.
Effects of Dietary Fatty Acids in Pancreatic Beta Cell Metabolism, Implications in Homeostasis.
Acosta-Montano P, Garcia-Gonzalez V Nutrients. 2018; 10(4).
PMID: 29565831 PMC: 5946178. DOI: 10.3390/nu10040393.