• Home
  • Textbooks
  • Anatomy and Physiology of Animals
  • The Cellular Level of Organization

Anatomy and Physiology of Animals

Gordon Betts, Peter DeSaix, Eddie Johnson

Chapter 3

The Cellular Level of Organization - all with Video Answers

Educators


Chapter Questions

01:46

Problem 1

The cell membrane provides a barrier around the cell, separating its internal components from the extracellular environment. It is composed of a phospholipid bilayer, with hydrophobic internal lipid "tails” and hydrophilic external phosphate "heads." Various membrane proteins are scattered throughout the bilayer, both inserted within it and attached to it peripherally. The cell membrane is selectively permeable, allowing only a limited number of materials to diffuse through its lipid bilayer. All materials that cross the membrane do so using passive (non energy-requiring) or active (energy-requiring) transport processes. During passive transport, materials move by simple diffusion or by facilitated diffusion through the membrane, down their concentration gradient. Water passes through the membrane in a diffusion process called osmosis. During active transport, energy is expended to assist material movement across the membrane in a direction against their concentration gradient. Active transport may take place with the help of protein pumps or through the use of vesicles.

Joanna Quigley
Joanna Quigley
Numerade Educator
01:20

Problem 1

Visit this link (http://openstaxcollege.org///diffusion) to see diffusion and how it is propelled by the kinetic energy of molecules in solution. How does temperature affect diffusion rate, and why?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
08:52

Problem 2

The internal environmental of a living cell is made up of a fluid, jelly-like substance called cytosol, which consists mainly of water, but also contains various dissolved nutrients and other molecules. The cell contains an array of cellular organelles, each one performing a unique function and helping to maintain the health and activity of the cell. The cytosol and organelles together compose the cell's cytoplasm. Most organelles are surrounded by a lipid membrane similar to the cell membrane of the cell. The endoplasmic reticulum (ER), Golgi apparatus, and lysosomes share a functional connectivity and are collectively referred to as the endomembrane system. There are two types of ER: smooth and rough. While the smooth ER performs many functions, including lipid synthesis and ion storage, the rough ER is mainly responsible for protein synthesis using its associated ribosomes. The rough ER sends newly made proteins to the Golgi apparatus where they are modified and packaged for delivery to various locations within or outside of the cell. Some of these protein products are enzymes destined to break down unwanted material and are packaged as lysosomes for use inside the cell.
Cells also contain mitochondria and peroxisomes, which are the organelles responsible for producing the cell's energy supply and detoxifying certain chemicals, respectively. Biochemical reactions within mitochondria transform energycarrying molecules into the usable form of cellular energy known as ATP. Peroxisomes contain enzymes that transform harmful substances such as free radicals into oxygen and water. Cells also contain a miniaturized "skeleton" of protein filaments that extend throughout its interior. Three different kinds of filaments compose this cytoskeleton (in order of increasing thickness): microfilaments, intermediate filaments, and microtubules. Each cytoskeletal component performs unique functions as well as provides a supportive framework for the cell.

James Thierer
James Thierer
Numerade Educator
01:21

Problem 2

Watch this video (http://openstaxcollege.org/// endomembrane1) to learn about the endomembrane system, which includes the rough and smooth ER and the Golgi body as well as lysosomes and vesicles. What is the primary role of the endomembrane system?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:05

Problem 3

The nucleus is the command center of the cell, containing the genetic instructions for all of the materials a cell will make (and thus all of its functions it can perform). The nucleus is encased within a membrane of two interconnected lipid bilayers, side-by-side. This nuclear envelope is studded with protein-lined pores that allow materials to be trafficked into and out of the nucleus. The nucleus contains one or more nucleoli, which serve as sites for ribosome synthesis. The nucleus houses the genetic material of the cell: DNA. DNA is normally found as a loosely contained structure called chromatin within the nucleus, where it is wound up and associated with a variety of histone proteins. When a cell is about to divide, the chromatin coils tightly and condenses to form chromosomes.
There is a pool of cells constantly dividing within your body. The result is billions of new cells being created each day. Before any cell is ready to divide, it must replicate its DNA so that each new daughter cell will receive an exact copy of the organism's genome. A variety of enzymes are enlisted during DNA replication. These enzymes unwind the DNA molecule, separate the two strands, and assist with the building of complementary strands along each parent strand. The original DNA strands serve as templates from which the nucleotide sequence of the new strands are determined and synthesized. When replication is completed, two identical DNA molecules exist. Each one contains one original strand and one newly synthesized complementary strand.

Josee Pacheco
Josee Pacheco
Numerade Educator
01:44

Problem 3

Watch this video (http://openstaxcollege.org/// DNArep) to learn about DNA replication. DNA replication proceeds simultaneously at several sites on the same molecule. What separates the base pair at the start of DNA replication?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
View

Problem 4

DNA stores the information necessary for instructing the cell to perform all of its functions. Cells use the genetic code stored within DNA to build proteins, which ultimately determine the structure and function of the cell. This genetic code lies in the particular sequence of nucleotides that make up each gene along the DNA molecule. To "read" this code, the cell must perform two sequential steps. In the first step, transcription, the DNA code is converted into a RNA code. A molecule of messenger RNA that is complementary to a specific gene is synthesized in a process similar to DNA replication. The molecule of mRNA provides the code to synthesize a protein. In the process of translation, the mRNA attaches to a ribosome. Next, tRNA molecules shuttle the appropriate amino acids to the ribosome, one-by-one, coded by sequential triplet codons on the mRNA, until the protein is fully synthesized. When completed, the mRNA detaches from the ribosome, and the protein is released. Typically, multiple ribosomes attach to a single mRNA molecule at once such that multiple proteins can be manufactured from the mRNA concurrently.

Sana Riaz
Sana Riaz
Numerade Educator
02:00

Problem 4

Watch this video (http://openstaxcollege.org// ribosome) to learn about ribosomes. The ribosome binds to the mRNA molecule to start translation of its code into a protein. What happens to the small and large ribosomal subunits at the end of translation?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:42

Problem 5

The life of cell consists of stages that make up the cell cycle. After a cell is born, it passes through an interphase before it is ready to replicate itself and produce daughter cells. This interphase includes two gap phases $\left(\mathrm{G}_{1}\right.$ and $\mathrm{G}_{2}$ ), as well as an S phase, during which its DNA is replicated in preparation for cell division. The cell cycle is under precise regulation by chemical messengers both inside and outside the cell that provide "stop" and "go" signals for movement from one phase to the next. Failures of these signals can result in cells that continue to divide uncontrollably, which can lead to cancer.
Once a cell has completed interphase and is ready for cell division, it proceeds through four separate stages of mitosis (prophase, metaphase, anaphase, and telophase). Telophase is followed by the division of the cytoplasm (cytokinesis), which generates two daughter cells. This process takes place in all normally dividing cells of the body except for the germ cells that produce eggs and sperm.

Morgan Thompson
Morgan Thompson
Numerade Educator
01:11

Problem 6

One of the major areas of research in biology is that of how cells specialize to assume their unique structures and functions, since all cells essentially originate from a single fertilized egg. Cell differentiation is the process of cells becoming specialized as they body develops. A stem cell is an unspecialized cell that can divide without limit as needed and can, under specific conditions, differentiate into specialized cells. Stem cells are divided into several categories according to their potential to differentiate. While all somatic cells contain the exact same genome, different cell types only express some of those genes at any given time. These differences in gene expression ultimately dictate a cell's unique morphological and physiological characteristics. The primary mechanism that determines which genes will be expressed and which ones will not is through the use of different transcription factor proteins, which bind to DNA and promote or hinder the transcription of different genes. Through the action of these transcription factors, cells specialize into one of hundreds of different cell types in the human body.

James Kiss
James Kiss
Numerade Educator
01:14

Problem 6

Because they are embedded within the membrane, ion channels are examples of ________.
a. receptor proteins
b. integral proteins
c. peripheral proteins
d. glycoproteins

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:10

Problem 7

The diffusion of substances within a solution tends to move those substances ________ their ________ gradient.
a. up; electrical
b. up; electrochemical
c. down; pressure
d. down; concentration

Heidi Luczynski
Heidi Luczynski
Numerade Educator
03:02

Problem 8

Ion pumps and phagocytosis are both examples of ________.
a. endocytosis
b. passive transport
c. active transport
d. facilitated diffusion

Tracy Lin
Tracy Lin
Numerade Educator
03:52

Problem 9

Choose the answer that best completes the following analogy: Diffusion is to ________ as endocytosis is to ________.
a. filtration; phagocytosis
b. osmosis; pinocytosis
c. solutes; fluid
d. gradient; chemical energy

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:40

Problem 10

Choose the term that best completes the following analogy: Cytoplasm is to cytosol as a swimming pool containing chlorine and flotation toys is to ________.
a. the walls of the pool
b. the chlorine
c. the flotation toys
d. the water

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:28

Problem 11

The rough ER has its name due to what associated structures?
a. Golgi apparatus
b. ribosomes
C. lysosomes
d. proteins

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:28

Problem 12

Which of the following is a function of the rough ER?
a. production of proteins
b. detoxification of certain substances
C. Synthesis of steroid hormones
d. regulation of intracellular calcium concentration

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:07

Problem 13

Which of the following is a feature common to all three components of the cytoskeleton?
a. They all serve to scaffold the organelles within the cell.
b. They are all characterized by roughly the same diameter.
c. They are all polymers of protein subunits.
d. They all help the cell resist compression and tension.

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:53

Problem 14

Which of the following organelles produces large quantities of ATP when both glucose and oxygen are available to the cell?
a. mitochondria
b. peroxisomes
C. lysosomes
d. $\mathrm{ER}$

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:30

Problem 15

The nucleus and mitochondria share which of the following features?
a. protein-lined membrane pores
b. a double cell membrane
c. the synthesis of ribosomes
d. the production of cellular energy

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:12

Problem 16

Which of the following structures could be found within the nucleolus?
a. chromatin
b. histones
C. ribosomes
d. nucleosomes

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:54

Problem 17

Which of the following sequences on a DNA molecule would be complementary to GCTTATAT?
a. TAGGCGCG
b. ATCCGCGC
c. $\quad$ CGAATATA
d. TGCCTCTC

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:57

Problem 18

Place the following structures in order from least to most complex organization: chromatin, nucleosome, DNA, chromosome
a. DNA, nucleosome, chromatin, chromosome
b. nucleosome, DNA, chromosome, chromatin
c. DNA, chromatin, nucleosome, chromosome
d. nucleosome, chromatin, DNA, chromosome

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:28

Problem 19

Which of the following is part of the elongation step of DNA synthesis?
a. pulling apart the two DNA strands
b. attaching complementary nucleotides to the template strand
C. untwisting the DNA helix
d. none of the above

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:19

Problem 20

Which of the following is not a difference between DNA and RNA?
a. DNA contains thymine whereas RNA contains uracil
b. DNA contains deoxyribose and RNA contains ribose
C. DNA contains alternating sugar-phosphate molecules whereas RNA does not contain sugars
d. RNA is single stranded and DNA is double stranded

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:24

Problem 21

Transcription and translation take place in the ________ and ________, respectively.
a. nucleus; cytoplasm
b. nucleolus; nucleus
c. nucleolus; cytoplasm
d. cytoplasm; nucleus

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:59

Problem 22

How many "letters" of an RNA molecule, in sequence, does it take to provide the code for a single amino acid?
a. 1
b. 2
c. 3
d. 4

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:13

Problem 23

Which of the following is not made out of RNA?
a. the carriers that shuffle amino acids to a growing polypeptide strand
b. the ribosome
C. the messenger molecule that provides the code for protein synthesis
d. the intron

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:47

Problem 24

Which of the following phases is characterized by preparation for DNA synthesis?
a. $\mathrm{G}_{0}$
b. $\mathrm{G}_{1}$
C. $\mathrm{G}_{2}$
d. $\mathrm{S}$

Asma Venkitta
Asma Venkitta
Numerade Educator
01:38

Problem 25

A mutation in the gene for a cyclin protein might result in which of the following?
a. a cell with additional genetic material than normal
b. cancer
c. a cell with less genetic material than normal
d. any of the above

Vishal Sharma
Vishal Sharma
Numerade Educator
01:05

Problem 26

What is a primary function of tumor suppressor genes?
a. stop all cells from dividing
b. stop certain cells from dividing
c. help oncogenes produce oncoproteins
d. allow the cell to skip certain phases of the cell cycle

Heidi Luczynski
Heidi Luczynski
Numerade Educator
View

Problem 27

Arrange the following terms in order of increasing specialization: oligopotency, pleuripotency, unipotency, multipotency.
a. multipotency, pleuripotency, oligopotency, unipotency
b. pleuripotency, $\quad$ oligopotency, $\quad$ multipotency unipotency
$\begin{array}{l}\text { C. oligopotency, } & \text { pleuripotency, } & \text { unipotency, }\end{array}$ multipotency
$\begin{array}{l}\text { d. pleuripotency, multipotency, } & \text { oligopotency, }\end{array}$ unipotency

Marisa A
Marisa A
Numerade Educator
01:32

Problem 28

Which type of stem cell gives rise to red and white blood cells?
a. endothelial
b. epithelial
C. hematopoietic
d. mesenchymal

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:08

Problem 29

What multipotent stem cells from children sometimes banked by parents?
a. fetal stem cells
b. embryonic stem cells
C. cells from the umbilical cord and from baby teeth
d. hematopoietic stem cells from red and white blood cells

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:27

Problem 30

What materials can easily diffuse through the lipid bilayer, and why?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:18

Problem 31

Why is receptor-mediated endocytosis said to be more selective than phagocytosis or pinocytosis?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
04:32

Problem 32

What do osmosis, diffusion, filtration, and the movement of ions away from like charge all have in common? In what way do they differ?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:22

Problem 33

Explain why the structure of the ER, mitochondria, and Golgi apparatus assist their respective functions.

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:01

Problem 34

Compare and contrast lysosomes with peroxisomes: name at least two similarities and one difference.

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:30

Problem 35

Explain in your own words why DNA replication is said to be "semiconservative"?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:54

Problem 36

Why is it important that DNA replication take place before cell division? What would happen if cell division of a body cell took place without DNA replication, or when DNA replication was incomplete?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:23

Problem 37

Briefly explain the similarities between transcription and DNA replication.

Heidi Luczynski
Heidi Luczynski
Numerade Educator
03:35

Problem 38

Contrast transcription and translation. Name at least three differences between the two processes.

Heidi Luczynski
Heidi Luczynski
Numerade Educator
01:17

Problem 39

What would happen if anaphase proceeded even though the sister chromatids were not properly attached to their respective microtubules and lined up at the metaphase plate?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:22

Problem 40

What are cyclins and cyclin-dependent kinases, and how do they interact?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
00:49

Problem 41

Explain how a transcription factor ultimately determines whether or not a protein will be present in a given cell?

Heidi Luczynski
Heidi Luczynski
Numerade Educator
02:00

Problem 42

Discuss two reasons why the therapeutic use of embryonic stem cells can present a problem.

Heidi Luczynski
Heidi Luczynski
Numerade Educator