If the plasma membrane were made of a hydrophilic substance like carbohydrate The cell would disintegrate very quickly.
- The tails, which face the inside of the cell membrane, are "hydrophobic," but the heads, which make up the exterior and inner linings, are "hydrophilic" (water loving) (water fearing).
- Water is drawn to the membrane's exterior (red) and inside (yellow), but cannot pass through the non-polar layer.
- They are insoluble in water like all lipids, but due to their special geometry, they may form bilayers without the usage of energy.
- They have hydrophilic (water-loving) phosphate heads and hydrophobic (water-fearing) hydrocarbon tails made of fatty acids, making them two-faced molecules.
- Phospholipids, which are made up primarily of fatty acids and alcohol, make up the majority of the plasma membrane.
- The plasma membrane's phospholipids are organized into two layers, known as phospholipid bilayers.
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The right answer is True.
Thanks to several genetic manipulations, a bacterium has been transformed into a plant exclusively dedicated to the production of biofuel. The microorganism expelling the precious fatty acid out of the cell, this synthetic route circumvents the expensive step of extraction and purification.
The production of this fuel faces several problems. It must achieve sufficient production rates to meet the demand for biofuel while being competitive with oil.
Answer:
a
Explanation:
it's a I like chicken is that cool
Answer:
That would be true!! Hope this helps.
Explanation:
The nitrogen produced when muscles break down amino acids for energy is transaminated to pyruvate to create alanine. The alanine transaminase (ALT) enzyme does this by converting L-glutamate and pyruvate into -ketoglutarate and L-alanine.
Pyruvic acid is transformed into acetyl coenzyme A, which enters the Krebs cycle, an energy-producing mechanism, if oxygen is present. Lactic acid is produced when pyruvic acid is depleted of oxygen. The body also uses this substance to create alanine. Lactate dehydrogenase is an enzyme that cells employ to convert the pyruvic acid that glucose produces into lactic acid and energy. Pyruvate and branched chain amino acids like valine, leucine, and isoleucine can be used to make alanine. Pyruvate is reductively aminated in two steps to yield alanine. Glutamate dehydrogenase converts -ketoglutarate, ammonia, and NADH into glutamate, NAD+, and water in the first step.
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