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Bacterial Cell Wall
used to handle changes in osmotic pressure, which can be lethal to the microorganism; composed of several parts and different in g+ and g- bacteria; outer protective structure of the bacterial cell
The time may come when penicillin can be bought by anyone in the shops. Then there is the danger that the ignorant man may easily underdose himself and by exposing his microbes to non-lethal quantities of the drug make them resistant - Sir Alexander Fleming
What is the quote in this chapter?
Peptidoglycan (AKA murein)
What is the primary component of the bacterial cell wall?
NAG and NAM
Peptidoglycan is a structure composed of repeating molecules of the sugars _____________
peptide chains
Peptidoglycan meshes together with ________________________ to form the basis of the cell wall
Binding between NAM and NAH
What is a huge component of the strength of the cell wall, providing a barrier to osmotic pressure?
Peptidoglycan
long strands of polysaccharides with alternating sugars; series of repeating disaccharides and polypeptide pieces
Polysaccharide with polypeptide crosslinking; peptide crossbridges
How does the peptidoglycan form a rigid structure that gives cell its shape and protects it?
In G+ cells the cross bridge is a little longer
What is the difference between polypeptide crosslinking component in G- and G+ cells?
Osmotic lysis
The rigidity of the cell wall protects the bacteria from what?
Peptidoglycan
important component of the bacterial cell wall that has implications for antibiotic therapy and resistance
Inside the cell and transported outside the cell
Where is peptidoglycan constructed?
Antibiotics
What is peptidoglycan a target for?
1. Cytoplasmic phase
2. Membrane-associated phase
3. Extracytoplasmic phase
What are the 3 phases of peptidoglycan assembly?
Cytoplasmic phase
NAG and NAM building block for peptidoglycan are fashioned in the cytoplasm of the cell
Peptidoglycan layers get laid down transversely (long axis) and vertically as the septum that divides the 2 daughter cells develops
What happens because the cell wall needs refurbished in the cytoplasmic phase?
amino acids
Cytoplasmic phase: NAG and NAM formed by enzymes that attach _____________________ to each NAM molecules
peptidoglycan subunits
Cytoplasmic phase: The assembly of ________________________ to build a new bacterial cell wall (important potential target for antibiotic therapy)
Membrane-associated phase
Specific enzymes link NAG and NAM subunits with a lipid portion of the bacterial cell membrane, which lies just inside the cell wall
Lipid carrier cycle
Membrane-associated phase: Insertion of the NAG and NAM into the plasma membrane is performed via what?
Formation of the bond between peptidoglycan and the side of the plasma membrane that faces the cytoplasm
Membrane-associated phase: What is the first step of inserting the NAG and NAM into the plasma membrane?
Extracytoplasmic phase
new subunits must be moved from the inner side of the plasma membrane to the outer; peptidoglycan subunits arrive to the outer lipid layer of the plasma membrane and react with a series of membrane-bound enzymes
The incorporation of the new subunits into the growing cell wall
Extracytoplasmic phase: What do the reactions with a series of membrane-bound enzymes allow for?
Antibiotic therapy
Extracytoplasmic phase: What are the membrane-bound enzymes a good target for?
Joining together the peptidoglycan layers to form a meshwork that serves as the foundation for the cell wall
Extracytoplasmic phase: What is the last step?
increased strength of the cell wall
The more peptidoglycan layers formed...
G+ = many layers
G- = few layers
What is the difference in peptidoglycan between the G+ and G- cells?
Cell wall lysis and no protection from plasmolysis
What may weak/damaged cell wall may result in?
Hypotonic environment
low concentration of solutes
Water diffuses through membrane, defect in cell wall, weakness, cell pops open
What may happen to a cell in a hypotonic environment if the cell wall is weak?
Turgor pressure
membranes press against cell wall in plants
Hypertonic environment
high concentration of solutes; draws water out, cell wall is porous, hasn't changed; can result in plasmolysis
Exposed peptidoglycan in thick layers (meshwork) and teichoic acid
What are the components of gram positive cell walls?
Teichoic acid molecules
repeating units of sugar-phosphate molecules (Ribitol or glycerol) to which various other sugars and amino acids are attached
Peptidoglycan
long runs of polysaccharides with peptide cross bridges
1. Wall teichoic acids = those that go partway through the peptidoglycan layers
2. Lipoteichoic acids = those that go completely through the peptidoglycan layer and link to the plasma membrane
What are the two types of teichoic acid molecules?
Produce above the peptidoglycan layer
What do both types of teichoic acid do?
More complex than gram positive; single or few layers of peptidoglycan, outer membrane, periplasm
What is the cell wall of gram negative cells like?
Presence of an outer membrane
How do gram negative cells acquire additional protection since they do not possess the same environmental protection that g+ bacteria do?
Phospholipid bilayer, lipoprotein, lipopolysaccharide (Lipid A), porins; lipopolysaccharide layers composed of lipids, proteins, and polysaccharides
What does the outer membrane of the gram negative cell wall contain?
Lipoprotein molecules
used to fasten the outer membrane of the cell to the peptidoglycan layer of the cell wall
Porins
very different pore in cell wall that allows materials to move into and out of periplasm; specialized proteins that contain channels that vary in size and specificity that are responsible for the passage of molecules and ions into or out of the cell
size of the channel
The _______________________ in the porin has a role in determining what substances can be moved into or out of the cell
Translocation protein systems
part of the outer membrane of gram negative cells, move substances in and out of the cell
In the periplasmic space
Where are many of the translocation protein systems found?
Periplasmic space
space between the plasma membrane and outer membrane; filled with gel-like material and contains variety of proteins secreted by the cell that have important role in the breakdown and transport of nutrients
Mycoplasma
has cell membrane but no cell wall (have no distinct shape, difficult to culture, and do not respond to antibiotics that target the cell wall)
- Teichoic acid in g+ cells colonize the nasal epithelial cells, allowing for a successful infection that can lead to additional complications such as bacteremia and septicemia
- Resistance to mupirocin
- Lipoteichoic acid of g+ cell wall also elicits inflammatory response in the host
What is the clinical significance of the bacterial cell wall in the gram positive bacteria S. aureus?
M protein that protrudes from the cell wall (virulence factor)
What is the clinical significance of the bacterial cell wall in the gram positive bacteria Strep?
Mycolic acid that makes the organisms resistant to environmental stress and provides a barrier that prevents the action of many antibiotics and many host defense mechanisms
What is the clinical significance of the bacterial cell wall in the gram positive bacteria Mycobacterium?
1. Outer membrane protects from antiseptics and disinfectants
2. Provides a barrier against the uptake of antibiotics
3. G- bacteria infections are much less sensitive to antibiotic tx
4. Porin channels exclude large antibiotics, and at times, smaller ones
5. LPS layer!!!
6. Parts of the outer membrane that have clinical relevance (Lipid A and O polysaccharides)
What are the 6 things in the bacterial cell wall of gram negative bacteria that help with diseases?
Can shrink
What can happen to the porin channel upon exposure to antibiotics?
Endotoxin, many of the clinical effects associated with gram-negative infections are due to the release of endotoxin molecules (Lipid A)
What is the LPS layer like for g- cells?
Lipid A
endotoxin portion, can cause shock if body's defenses overreact
O polysaccharides
Can be used as a diagnostic tool for certain bacteria
Lysozyme is too big for porins, as they only let in size of 600d or less; gram positive cells will be effective because they have a much larger peptidoglycan layer and no outer membrane
Lysozyme (14Kd enzyme in tears, saliva, sweat degrades peptidoglycan. Which will be affected? Why?
G+ cell wall has thick layers of peptidoglycan, so inhibition of peptidoglycan synthesis has a greater effect
Penicillin, cephalosporin, and vancomycin antibiotics prevent peptidoglycan synthesis (inhibit enzymes cell makes to make peptidoglycan). Why are G+ cell wall more sensitive to antibiotics than gram negative?
- Glycocalyx, fimbriae/pili are involved with adherence
- Flagella, axial filament, pili are involved with motility; can be used to defeat host defenses and damage the host, as well as transmission
What are the 5 structures outside the bacterial cell wall?
Glycocalyx
sticky substance composed of polysaccharides and/or polypeptides that are produced in the cytoplasm and secreted to the outside of the cell, where they become fastened to the cell wall in 2 distinct ways
1. Slime layer= when the molecules are loosely attached to the cell wall
2. Capsule = when the molecules are highly organized and adhere tightly to the cell wall
What are the 2 ways the sticky substances can become fastened to the cell wall?
adhere to surfaces, nutrition
Both slime wall and capsule give the bacterial cell the ability to _________________ and can be a source of __________
1. Adhering so bacteria are not swept away by the host
2. Slime layer seen in dental decay and biofilm
3. Capsule seen in pneumonia (required for infection in some bacteria)
4. Primary reason for infectivity associated with presence of capsule is inhibition of phagocytosis; capsule prevents phagocytic cell from adhering to the bacterium
What are the 4 clinical significances of glycocalyx, slime layer, and capsule?
Fimbriae and pili
sticky projections that are short than flagella; found on g- organisms
Pilin protein subunits
What are fimbriae and pili composed of?
Fimbriae, pili
__________ help with adherence to host cells and ______ help with adherence to other bacterial cells
Adherence; transfer of genetic material from donor bacterium to recipient bacterium through the process of conjugation
______________ seems to be the only function of the fimbriae; pili are also involved in what?
1. Fulfilling the requirement to staying in the hose
2. Especially in GI and GU bacteria diseases where the bacteria can easily be flushed out by the system (UTI, gonorrhea, e. coli infections)
3. Pili can be used for vaccine development since the antibodies that bind to the pili could block the binding of the pathogen to host cell surface receptors
4. Pili motility moving the organisms to different areas in the host (bacteria motility)
5. Pili can be used for immune escape
6. Pili facilitate the transfer of genetic material from one bacterial cell to the other (conjugation); provides gram- organisms with a method for genetic modification and self-defense
What are the 6 clinical significances of fimbriae and pili?
- Caterpillar like movement
- Ability to move helps organisms form biofilms, which help colonies become resistant to immune infections, antibiotics, and other therapies
What is pili movement like?
Immune escape
the ability to evade the host immune response
Phase variation
tactic in which the number of pili decreases after the initial infection, taking away the target for antibodies
Antigenic variation/post-translational modification
change or mask the structure of the pili so that antibodies no longer recognize the invaders
fragments of the pili (S. pili)
Secrete _______________________ that bind to the antibody molecules and inactivate them
Genetic modifications
______________________ can involve the production of dangerous toxins and the transfer of genes responsible for antibiotic disease
Axial filaments
wrap around the bacterial cell and give it motility AKA endoflagella
Spirochetes and are 1 of 2 structures exterior to the cell wall that are responsible for bacteria mobility
What are axial filaments found on?
Between the plasma membrane and outer membrane
What space are axial filaments confined to?
A rotational movement, rotation of the axial filaments causes the entire organisms to rotate in a corkscrew manner
What can axial filaments produce?
Corkscrew movement pattern gives bacterium the ability to bore through tissues
What is the clinical significance of axial filaments?
Flagella
long structures that extends far beyond the cell wall and even beyond the glycocalyx; motility
1. Filament
2. Hook
3. Basal body
What are the 3 parts of the flagella?
Filament
made up of molecules of the protein flagellin; molecules that attach to one another to form a chain that is twisted into a helical structure, giving the flagellum a hollow core
Hook
structure that links the flexible filament to the basal body
Basal body
anchors the hook to the bacterial cell interior, fastens the flagellum to the cell, rod that has ring strategically fastened to it, one or two pairs of rings
One pair of rings since g+ cell walls contain a lot of peptidoglycan, which also contributes strength and stability; pair of rings is fastened to the plasma membrane
How many pairs of rings does the basal body of gram positive cells have?
Very little peptidoglycan, so it needs reinforcements; 2 pairs of rings on the basal body
How many pairs of rings does the basal body of gram negative cells have?
Speed of the flagellum
______________________ causes stress b/w the filament and the cell
1. Monotrichous
2. Amphitrichous
3. Lophotrichous
4. Peritrichous
What are the 4 distinct flagellar configurations bacteria can have?
Monotrichous
most common form; bacterium has 1 flagella located at one end of the cell
Amphitrichous
bacterium has 2 flagella, one on each end of the cell
lophotrichous
bacterium has 2 or more flagella located at the same end of both ends of the cell
Peritrichous
entire cell is surrounded by flagella
Atrichous bacteria
nonmotile bacteria
1. Propelling into heavy layers of mucous
2. Presence of flagella can gain foothold for the bacteria in opportunistic infections
What are the 2 clinical significances of flagella?
Intracellular movement
importance of bacteria to gain entry to the host cell so they are shielded from defenses; some use cytoskeletal structures
structures of the host cell, such as actin fibers
Salmonella and shigella use ___________________________ to gain access to the host cell and for intracellular movement in the host cell and to move from one host cell to another
Plasma membrane, nuclear region, plasmids, ribosomes, inclusion bodies, and endospores
What are the 6 major structures inside the cell wall that are all involved with intrinsic functions?
Phospholipid bilayer that allows small non-polar (O2) and polar materials (H2O) to pass
What is the biological membrane of bacteria?
Large molecules and ions (H+)/protons
What is the biological membrane an excellent barrier to?
Plasma membrane
_______________________ of bacterium is a delicate, flexible structure that holds in the internal cellular matrix of cytosol
Selectively permeable
only allows certain small molecules (gases and hydrophilic molecules) can pass through easily, plasma membranes are this