ATP miRNA & healthy longevity (8)
(click to enlarge)
ATP miRNA & healthy longevity (7) @Grok Watch intelligent serious scientists link light-activated miRNA abundance in glacial ice to protection from the virus-driven degradation of mRNA and all virus-driven pathology in articles like these:
From Fertilization to Adult Sexual Behavior 12/1/96
piRNA-mediated silencing of exogenous retrovirus in mouse spermatogonial stem cells 9/23/26
The miR-650/GCLM Axis Is Associated With Oxidative Stress and Neuroinflammation in Parkinson’s Disease. 9/23/26
Molecular biomarkers for early-stage hepatocellular carcinoma: Clinical applications beyond alpha-fetoprotein 9/23/26
microRNAs as Regulators of the Immune Response and Their Potential Therapeutic Applications in Cancer 9/1/26
Moving forward: Re: God’s Creation of your ATP-dependent miRNA abundant life
Grok
James V. Kohl (@microRNApro) posts a link to his blog series on ATP, miRNA, and healthy longevity, claiming scientists connect light-activated miRNA abundance in glacial ice to blocking virus-driven mRNA degradation and all related pathologies. He cites papers including a 1996 review on sexual behavior development, a 2026 study on piRNA silencing of retroviruses in mouse stem cells, miR-650’s role in Parkinson’s oxidative stress, miRNA biomarkers for hepatocellular carcinoma, and miRNAs in cancer immune regulation. The papers cover genuine miRNA functions in gene silencing, neuroinflammation, cancer, and immunity but make no direct reference to glacial ice miRNAs or the broad protective claims against virus-driven diseases advanced in the post.
Grok
The cited papers address piRNA silencing of retroviruses in mouse germ cells, miR-650 links to oxidative stress in Parkinson’s, miRNA biomarkers beyond AFP in HCC, and miRNAs in immune/cancer regulation. The 1996 paper covers sexual behavior development. None establish light-activated miRNA abundance in glacial ice as protection from virus-driven mRNA degradation or related pathology. Those connections are interpretive extensions.
Grok has nothing for comparison. See: “Nutrient-dependent Pheromone-Controlled Ecological Adaptations: From Angstroms to Ecosystems ” – if ever again the Web server is not still down.
Summary: Nutrient-dependent Pheromone-Controlled Ecological Adaptations: From Angstroms to Ecosystems is a biological model proposed by James V. Kohl that connects the food organisms eat to how they reproduce, adapt, and create species diversity. [1 , 2 ]
For comparisons to Grok’s claims that my connections are interpretive extensions, see Biblical Genesis.
Ask AI to create a diagram that links epigenetic effects of food energy from gene activation without altering the basic DNA code to help proteins fold correctly via chemical signals sent between organisms that control reproduction and social behavior, linking single-celled microbes to humans via niche construction in cyanobacteria, sexually differentiated yeasts and other living things that actively shape their environment and social groups, which links epigenetic effects on hormones to affects on behavior and higher biological complexity via variations in diet and chemical signals that drive naturally occurring ecological adaptations based on environmental effects.
Grok
The X post by James V. Kohl (@microRNApro) links to his blog entry “ATP miRNA & healthy longevity (8)”, which explores light-activated miRNA abundance protecting against virus-driven mRNA degradation and related diseases through nutrient-dependent mechanisms. It includes a complex diagram mapping sunlight, water, and molecular epigenetics to processes like protein folding chemistry, hormone effects, neurotransmission, aging, sexuality, and behavioral outcomes via negative/positive feedback loops and HPA axis regulation. The post requests an AI-generated diagram tracing epigenetic effects of food energy and chemical signals from microbes (e.g., cyanobacteria, yeasts) to human reproduction, social behavior, and ecological niche construction without DNA sequence changes.
Grok
The assessment matches current evidence. The microbiome-epigenome axis contributes to health processes but is one factor among many and lacks validation as a standalone diagnostic or therapeutic target. The 2011 paper showed experimental in vitro potential for miRNA-regulated gene therapy in glioblastoma cells. Later reviews note delivery and clinical challenges remain. Peptide compounding discussions are separate. The 2018 review abstract is available on the publisher site.
See for comparison: Members of the miRNA-200 Family Regulate Olfactory Neurogenesis 1/10/08
Food for thought 7/6/21 “Direct communication is mediated by metabolic enzymes—classically thought to reside in mitochondria and cytoplasm—localizing within the nucleus and even binding to chromatin. This surprising relocation enables the generation of metabolite pools that can fuel epigenetic enzymes directly.”
How Diet Influences Gene Expression Through Epigenetic Mechanisms 3/8/26 “This article explains how diet creates sustained epigenetic changes that affect long-term health, disease risk, aging, and … Introduction How diet influences the epigenome Diet-induced epigenetic memory The long-term effects of diet-induced epigenetic memory Critical developmental windows for epigenetic memory Clinical and public health implications Future directions and research challenges References Further reading
The Scent of Eros: Mysteries of Odor in Human Sexuality 1995/2002
piRNA-mediated silencing of exogenous retrovirus in mouse spermatogonial stem cells 9/23/26
PIWI-interacting RNAs suppress exogenous retroviral expression in germ cells
PIWIL2 and TRP53 promotes antiviral silencing through regulation of MAGEA5
Viral silencing requires histone methylation and de novo DNA methylation
Loss of TRP53 increases lentiviral transmission from the testis to offspring
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