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mariarad [96]
4 years ago
11

I NEED HELP PLEASE PICTURE ABOVE

Biology
1 answer:
Anastasy [175]4 years ago
7 0
Slow or stop spending incase of unemployment.
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All of the chemical reactions are within an organism is known as_____
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All of the chemical reactions are within an organism is known as METABOLISM
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4 years ago
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E) what are the be amino acids formed from this gene?
Elena-2011 [213]

Answer:Amino acids play central roles both as building blocks of proteins and as intermediates in metabolism. The 20 amino acids that are found within proteins convey a vast array of chemical versatility. Tertiary Structure of a proteinThe precise amino acid content, and the sequence of those amino acids, of a specific protein, is determined by the sequence of the bases in the gene that encodes that protein. The chemical properties of the amino acids of proteins determine the biological activity of the protein. Proteins not only catalyze all (or most) of the reactions in living cells, they control virtually all cellular process. In addition, proteins contain within their amino acid sequences the necessary information to determine how that protein will fold into a three dimensional structure, and the stability of the resulting structure. The field of protein folding and stability has been a critically important area of research for years, and remains today one of the great unsolved mysteries. It is, however, being actively investigated, and progress is being made every day.

As we learn about amino acids, it is important to keep in mind that one of the more important reasons to understand amino acid structure and properties is to be able to understand protein structure and properties. We will see that the vastly complex characteristics of even a small, relatively simple, protein are a composite of the properties of the amino acids which comprise the protein.

Top

Essential amino acids

Humans can produce 10 of the 20 amino acids. The others must be supplied in the food. Failure to obtain enough of even 1 of the 10 essential amino acids, those that we cannot make, results in degradation of the body's proteins—muscle and so forth—to obtain the one amino acid that is needed. Unlike fat and starch, the human body does not store excess amino acids for later use—the amino acids must be in the food every day.

The 10 amino acids that we can produce are alanine, asparagine, aspartic acid, cysteine, glutamic acid, glutamine, glycine, proline, serine and tyrosine. Tyrosine is produced from phenylalanine, so if the diet is deficient in phenylalanine, tyrosine will be required as well. The essential amino acids are arginine (required for the young, but not for adults), histidine, isoleucine, leucine, lysine, methionine, phenylalanine, threonine, tryptophan, and valine. These amino acids are required in the diet. Plants, of course, must be able to make all the amino acids. Humans, on the other hand, do not have all the the enzymes required for the biosynthesis of all of the amino acids.

Why learn these structures and properties?

It is critical that all students of the life sciences know well the structure and chemistry of the amino acids and other building blocks of biological molecules. Otherwise, it is impossible to think or talk sensibly about proteins and enzymes, or the nucleic acids.

Explanation:

5 0
3 years ago
Analyze the relationships between the anatomical structures and physiological functions of the muscular system by matching the t
Afina-wow [57]

Answer:

a. Endomysium <u>8. The layer of connective tissue that surrounds an individual </u>muscle fiber

b. Epimysium <u>6. The layer of connective tissue that surrounds a skeletal </u>muscle

c. Fascia <u>3. Connective tissue located between adjacent muscles</u>

d. Fascicle 1<u>2. A small bundle of muscle fibers within a muscle</u>

e. Myosin <u>11. Protein found within a thick filament </u>

f. Perimysium <u>4. The layer of connective tissue that separates a muscle into small bundles</u>

g. Sarcolemma <u>5. The plasma membrane of a muscle fiber</u>

h. Sarcomere <u>7. Unit of alternating light and dark striations between discs (lines)</u>

i. Sarcoplasm <u>2. The cytoplasm of a muscle fiber</u>

j. Sarcoplasmic reticulum <u>9. A cellular organelle in muscle fiber corresponding to the endoplasmic</u>

k. Tendon <u>10. The cordlike part that attaches a muscle to a bone</u>

l. Transverse (T) tubule reticulum <u>1. Membranous channel extending inward from muscle fiber membrane </u>

Explanation:

A muscle has around it epimysium, which is connective tissue. Inside the epimysium, there are fascicles, and around each of them, there is perimysium. Inside every fascicle, there are muscle fibers, each of them is surrounded by a connective tissue called endomysium. Between every muscle, there is also connective tissue and is called fascia. The connective tissue has vessels and provides support.

The muscle cells are called fibers. They have a membrane, the sarcolemma, a cytoplasm, the sarcoplasm, and a sarcomere, which is the functional unit of the fiber, in other words, it is the structure responsible for the contraction. The sarcomere has different bands made of thick filaments of myosin and thin filaments of actin. They are the light and dark striations that go from disc z to disc z when we observe the sarcomere under a special microscope. The sarcoplasmic reticulum is the place that stores the calcium necessary for the contraction of the fiber, and the transverse tubule reticulum allows the contraction of various fibers since they spread the action potential amongst fibers.

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3 years ago
What is heat? Edgenu1ty
cricket20 [7]

Answer: D

Explanation:Heat is the form of energy that is transferred between systems or objects with different temperatures (flowing from the high-temperature system to the low-temperature system). Also referred to as heat energy or thermal energy. Heat is typically measured in Btu, calories or joules

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3 years ago
Check all the examples that would be considered an APPROPRIATE use of biotechnology.
saul85 [17]

Answer:

B. Genetic engineering of a virus to create a biological weapon.

C.Use of genetic modification to produce laboratory mice with D.Alzheimer's disease.

E.Use of genetic modification to produce a superior race of humans

Explanation: Biotechnology is the use of biology to solve various problems.

Modern biotechnology has provide various technologies to fight debilitating and rare disease, increase food production and the use less and cleaner energy.

The use of Genetically modified organism(GMO)produced through genetic engineering is one of the major biotechnology that is used in this age or generation. GMO's contains genes that are artificially engineered into them that are beneficiary.

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3 years ago
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