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Contents - Garland Science
Contents - Garland Science

... from the atmosphere via a symbiotic association with bacteria ...
Water
Water

... as the mRNA is moved through the ribosome one codon at a time. (When completed, the polypeptide is released from the ribosome.) ...
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Effect of ZnO on Pd/ZnO Catalysts in Steam Reforming of Methanol

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... Condensation reaction involving a glycerol and 2 fatty acid molecules yield_______ and ______. A. 1 Phospholipid / 2 phosphate B. 1 Diacylglycerol / 2 water C. 2 Monoacylglycerol / 2 water D. 2 Monoacylglycerol / 1 water ...
Macromolecules Reading Activity updated 9-14-11
Macromolecules Reading Activity updated 9-14-11

... sequence in proteins. Hence, the genetic code regulates the chemistry taking place within a cell. Proteins also can serve as a reserve source of energy for the cell. When the amino group is removed from an amino acid, the resulting compound is energy rich. ...
AP European History (Sem 1), Unit 03, Lesson 04
AP European History (Sem 1), Unit 03, Lesson 04

... amino acids, are linked together through the process of dehydration synthesis. Peptide bonds join amino acids in the primary structure (as seen in Figure 1, while additional chemical interactions may join adjacent or distant amino acids as they form secondary, tertiary, and quaternary structures.  ...
File - Riske Science
File - Riske Science

... – Living organisms have to be able to: • Exchange matter and energy with their surroundings. • Transform matter and energy into different forms. • Respond to changes in their environment. • Grow. • Reproduce. ...
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Biochemistry_Introduction

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Biological Molecules - Parkland Secondary School
Biological Molecules - Parkland Secondary School

... Amino acids are made up of a central carbon atom attached to a hydrogen atom and 3 groups. Two of these groups are the same for all amino acids: the amine group and the carboxyl group. The last group is different for all of the amino acids; this is commonly referred to as the ‘R’ – group. The generi ...
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DNA to Disease

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Evolution handout
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... Once the tRNA has found it’s position along the mRNA it locks into a distinct place. The tRNA also carries – as a specific correlation to its nucleotide sequence - one distinct amino acid. A tRNA is therefore distinct for its three nucleotides at one end, and its proper amino acid at the other end o ...
RNA - Mr. Dudley's Website
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Biological Molecules
Biological Molecules

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Chapter 4 Cellular Metabolism
Chapter 4 Cellular Metabolism

... Which process requires energy? anabolic Which process releases energy? Catabolic The process of joining two molecules by removing water is called __dehydration synthesis_ The process of splitting two molecule by adding water is called __hydrolysis__ Control of metabolism: ____enzymes___control the r ...
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Amino acid synthesis

Amino acid synthesis is the set of biochemical processes (metabolic pathways) by which the various amino acids are produced from other compounds. The substrates for these processes are various compounds in the organism's diet or growth media. Not all organisms are able to synthesise all amino acids. Humans are excellent example of this, since humans can only synthesise 11 of the 20 standard amino acids (aka non-essential amino acid), and in time of accelerated growth, arginine, can be considered an essential amino acid.A fundamental problem for biological systems is to obtain nitrogen in an easily usable form. This problem is solved by certain microorganisms capable of reducing the inert N≡N molecule (nitrogen gas) to two molecules of ammonia in one of the most remarkable reactions in biochemistry. Ammonia is the source of nitrogen for all the amino acids. The carbon backbones come from the glycolytic pathway, the pentose phosphate pathway, or the citric acid cycle.In amino acid production, one encounters an important problem in biosynthesis, namely stereochemical control. Because all amino acids except glycine are chiral, biosynthetic pathways must generate the correct isomer with high fidelity. In each of the 19 pathways for the generation of chiral amino acids, the stereochemistry at the α-carbon atom is established by a transamination reaction that involves pyridoxal phosphate. Almost all the transaminases that catalyze these reactions descend from a common ancestor, illustrating once again that effective solutions to biochemical problems are retained throughout evolution.Biosynthetic pathways are often highly regulated such that building-blocks are synthesized only when supplies are low. Very often, a high concentration of the final product of a pathway inhibits the activity of enzymes that function early in the pathway. Often present are allosteric enzymes capable of sensing and responding to concentrations of regulatory species. These enzymes are similar in functional properties to aspartate transcarbamoylase and its regulators. Feedback and allosteric mechanisms ensure that all twenty amino acids are maintained in sufficient amounts for protein synthesis and other processes.
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