miRNA vs LLM word usage (5)

By: Jim Kohl | Published on: September 10, 2026

miRNA vs LLM word usage (4)

Picard’s conclusion:

“How you feel can change mitochondria.

The mitochondria can change probably how you feel.”

Kohl

Think again about what you feel. Be the polymath, not the brain-dead theorist, or Elon Musk’s most dangerous chatbot, @Grok

Moving forward: See: mirna 201,000 results. Think about hunger compared to biophysically constrained ATP-dependent RNA-mediated oxygen-dependent plant growth [and food energy].

See: Predicting diagnostic gene biomarkers associated with immune infiltration in patients with diabetes. 9/7/26, and First insights into the miRNA landscape of Tursiops truncatus milk reveal shared dominant microRNA families with terrestrial mammals.

Grok

The post is entry (4) in @microRNApro’s series contrasting miRNA-mediated epigenetic mechanisms—linking nutrient energy, autophagy, and pH-dependent processes to behavior and adaptation—with LLM word usage patterns.
It references Martin Picard’s mitochondrial psychobiology research, showing bidirectional effects where feelings like anxiety or purpose influence brain mitochondrial efficiency (e.g., [Respiratory] Complex I proteins), which in turn can shift social behavior and perception.
Author James V. Kohl promotes a polymath, biologically grounded view of feelings and mitochondria over abstract theories, directly tagging and critiquing @Grok as “Elon Musk’s most dangerous chatbot.”

Follow-up:

Grok cannot know what people feel when they can’t breath. However, it could be programmed to suck out your oxygen-depenndent purpose-driven life.

See also: Hemoglobin and chlorophyll share a fascinating structural resemblance in their core prosthetic groups despite serving vastly different biological roles.

Hemoglobin is the protein in red blood cells that transports oxygen throughout the human body while chlorophyll is the pigment in plants that captures light energy for photosynthesis.

At the heart of both molecules lies a large ring structure known as a porphyrin or a closely related chlorin ring composed of four pyrrole subunits linked together.

This planar organic framework coordinates a central metal ion held in place by four nitrogen atoms. In the heme group of hemoglobin the metal is iron which allows reversible binding of oxygen molecules enabling efficient oxygen delivery to tissues.

In contrast chlorophyll features magnesium at its center which facilitates the absorption of photons and the subsequent transfer of electrons in the photosynthetic process.

Although the rings are highly similar chlorophyll has a slightly modified structure with one reduced double bond and additional side chains including a long phytol tail that anchors it in membranes. These subtle differences along with the distinct proteins or complexes they associate with account for their specialized functions.

The evolutionary conservation of this porphyrin-like scaffold underscores its versatility in handling metal ions for critical life processes from oxygen transport to energy conversion from sunlight.

The shared architecture highlights how nature reuses molecular motifs across kingdoms of life to support essential metabolic activities in diverse organisms living on planet Earth today.

Source: Alberts, B. et al. Molecular Biology of the Cell. 2002 Garland Science.”

See for comparison: Cellulose: A Plant Cell Biology Game and Site of Photosynthesis & Photosynthetic Pigments

Photosynthesis mainly takes place in the chloroplasts of green plants. Chloroplasts contain photosynthetic pigments that absorb light energy and help convert it into chemical energy.

🔬 Key Points

🌱 Main site: Photosynthesis occurs primarily in the chloroplasts of leaf mesophyll cells.

🟢 Grana: Stacks of thylakoids where the light-dependent reactions occur.

🧬 Stroma: Fluid-filled region where the Calvin cycle takes place.

🎨 Chlorophyll a: The primary photosynthetic pigment and reaction-centre pigment.

🌿 Chlorophyll b: An accessory pigment that expands the range of light absorbed.

🟠 Carotenoids: Accessory pigments, including carotenes and xanthophylls, that absorb additional wavelengths and help protect chlorophyll from excess light.

☀️ Light harvesting: Accessory pigments transfer absorbed light energy to chlorophyll a in the photosynthetic reaction centres.

💡 Quick Fact: Leaves appear green because chlorophyll absorbs light strongly in the blue and red regions of the visible spectrum while reflecting more green light.

❓ Quick Quiz: Which pigment is considered the primary photosynthetic pigment?

A) Chlorophyll a
B) Chlorophyll b
C) Xanthophyll
D) Carotene

🤖 AI Disclaimer: “This content is AI-generated for educational purposes. Always verify important scientific information from reliable scientific sources.

Ha Ha Ha (ridicule, not humor)

The food energy-dependent pheromone regulated physiology of reproduction in cyanobacteria links human hemoglobin variants from fixation of amino acid substitutions to all biodiversity on Earth via Harvard’s patent for RNA-guided human genome engineering, Virus-mediated archaeal hecatomb in the deep seafloor 10/12/16, Eukaryotic plankton diversity in the sunlit ocean 5/22/15 and pH-dependent oxygen-dependent life. For instance, the oxygen comes from the water in the deep seafloor.


Subscribe
Notify of
guest
0 Comments
Oldest
Newest Most Voted

Want more on the same topic?

Swipe/Drag Left and Right To Browse Related Posts: