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L2_Tour of the Cell_Fa08
L2_Tour of the Cell_Fa08

... Function: Protein synthesis • Ribosome parts are made in nucleus by nucleolus • Parts travel out of nucleus, into cytoplasm Two types: • Bound ribosome – Bound to endoplasmic reticulum (ER) – Make proteins for membranes or exportation from cell ...
Active Transport
Active Transport

... (2nd type of active transport process) ...
Figure 2.9 Cell division in prokaryotes occurs by binary fission. In
Figure 2.9 Cell division in prokaryotes occurs by binary fission. In

... ...
The Cell Theory!
The Cell Theory!

... • A cell is the basic unit of life. ...
Organelles 2010_1
Organelles 2010_1

... • Function: A cell wall is a tough, usually flexible but sometimes fairly rigid layer that surrounds some types of cells. • Structure: It is located outside the cell membrane and provides these cells with structural support and protection, and also acts as a filtering mechanism. A major function of ...
How Cells Are Put Together
How Cells Are Put Together

... one of two lipid bilayers (facing nucleoplasm) ...
Chapter 6 PPT
Chapter 6 PPT

... Function: control center of cell  Contains DNA  Surrounded by double membrane (nuclear envelope)  Continuous with the rough ER  Nuclear pores: control what enters/leaves nucleus  Chromatin: complex of DNA + proteins; makes up chromosomes  Nucleolus: region where ribosomal subunits are formed ...
Chapter 6 - CowanScience
Chapter 6 - CowanScience

... Function: control center of cell  Contains DNA  Surrounded by double membrane (nuclear envelope)  Continuous with the rough ER  Nuclear pores: control what enters/leaves nucleus  Chromatin: complex of DNA + proteins; makes up chromosomes  Nucleolus: region where ribosomal subunits are formed ...
Plants - Reproduction
Plants - Reproduction

... Function: control center of cell  Contains DNA  Surrounded by double membrane (nuclear envelope)  Continuous with the rough ER  Nuclear pores: control what enters/leaves nucleus  Chromatin: complex of DNA + proteins; makes up chromosomes  Nucleolus: region where ribosomal subunits are formed ...
Ch_ 6 Cells - Valhalla High School
Ch_ 6 Cells - Valhalla High School

... Function: control center of cell  Contains DNA  Surrounded by double membrane (nuclear envelope)  Continuous with the rough ER  Nuclear pores: control what enters/leaves nucleus  Chromatin: complex of DNA + proteins; makes up chromosomes  Nucleolus: region where ribosomal subunits are formed ...
Ch. 6 - Crestwood Local Schools
Ch. 6 - Crestwood Local Schools

... 1. Na+- K+ pump 2. Electrogenic or H+ pumps 3. Cotransport ...
Selectively Permeable Membranes Reading and Pics
Selectively Permeable Membranes Reading and Pics

... Within and around cells, materials are constantly being shipped one way or another across membranes. At any given moment, a particular substance may exist in higher or lower concentrations on one side of the membrane versus the other. Such a difference in concentration is called a gradient. The part ...
generalized animal cell
generalized animal cell

... does not contain ribosomes. •The ER transports substances, stores newly synthesized molecules, synthesizes and packages molecules, detoxifies chemicals, and releases calcium ions involved in muscle contraction. ...
Cell Analogy Worksheet
Cell Analogy Worksheet

... After the widget is constructed, they are placed on special carts which can deliver the widget anywhere in the city. In order for a widget to be exported, the carts take the widget to the postal office, where the widgets are packaged and labeled for export. Sometimes widgets don't turn out right, an ...
Cell Physiology
Cell Physiology

... • Solute pumps – Specialized protein carriers – Most move from low to high concentration ...
Label a Plant Cell (Up to 16yrs old / GCSE)
Label a Plant Cell (Up to 16yrs old / GCSE)

... The structure in plant cells that contains chlorophyll and in which photosynthesis takes place ...
Important organells in a Cell 2
Important organells in a Cell 2

... • All cells come from pre-existing cells. ...
Cellular Transport
Cellular Transport

... out; creates a membrane potential ...
Cellular Transport Across the Membrane
Cellular Transport Across the Membrane

... The pocket will break off inside of the cell and form a vesicle The vesicle will fuse with a lysosome and be digested. The substance is released into the cell. ...
Biology II – Chapter 4 Test**
Biology II – Chapter 4 Test**

... 25. Glucose and amino acids cross the cell membrane even though they are not lipid soluble with help and no energy use by means of ___________________________________. 26. A process in which a vesicle is formed at the cell membrane to bring a substance into the cell is called _______________________ ...
AP Biology - ReicheltScience.com
AP Biology - ReicheltScience.com

... wall- protects and maintains shape  Primary cell wall- thin flexible wall (young plant)  Secondary cell wall- hardened structure between the plasma membrane and primary wall  Middle lamella- Thin layer with sticky polysaccharides (pectins) glues cells together  Plasmodesmatacommunicating channel ...
Cells: The Living Units: Part A
Cells: The Living Units: Part A

... Cells: The Living Units: Part A Cell Theory • The cell is the smallest structural and functional living unit • Organismal functions depend on individual and collective cell functions • Biochemical activities of cells are dictated by their specific subcellular structures • Continuity of life has a ce ...
the cell lab2 part 1 and 2
the cell lab2 part 1 and 2

... • (1839)Theodor Schwann & Matthias Schleiden “ all living things are made of cells” • (50 yrs. later) Rudolf Virchow “all cells come from cells” ...
Name
Name

... engulfed bacteria. e. Surface receptors of the white blood cells permitted bacteria to enter the cells. 11. Plasma membranes are selectively permeable. This means that a. Anything can pass into or out of a cell as long as the membrane is intact and the cell is healthy. b. The plasma membrane allows ...
cytoplasm
cytoplasm

... – located in a membrane-bound nucleus for eukaryotic cells ...
< 1 ... 916 917 918 919 920 921 922 923 924 ... 1009 >

Endomembrane system

The endomembrane system is composed of the different membranes that are suspended in the cytoplasm within a eukaryotic cell. These membranes divide the cell into functional and structural compartments, or organelles. In eukaryotes the organelles of the endomembrane system include: the nuclear membrane, the endoplasmic reticulum, the Golgi apparatus, lysosomes, vesicles, endosomes and the cell membrane. The system is defined more accurately as the set of membranes that form a single functional and developmental unit, either being connected directly, or exchanging material through vesicle transport. Importantly, the endomembrane system does not include the membranes of mitochondria or chloroplasts.The nuclear membrane contains two lipid bilayers that encompass the contents of the nucleus. The endoplasmic reticulum (ER) is a synthesis and transport organelle that branches into the cytoplasm in plant and animal cells. The Golgi apparatus is a series of multiple compartments where molecules are packaged for delivery to other cell components or for secretion from the cell. Vacuoles, which are found in both plant and animal cells (though much bigger in plant cells), are responsible for maintaining the shape and structure of the cell as well as storing waste products. A vesicle is a relatively small, membrane-enclosed sac that stores or transports substances. The cell membrane, is a protective barrier that regulates what enters and leaves the cell. There is also an organelle known as the Spitzenkörper that is only found in fungi, and is connected with hyphal tip growth.In prokaryotes endomembranes are rare, although in many photosynthetic bacteria the plasma membrane is highly folded and most of the cell cytoplasm is filled with layers of light-gathering membrane. These light-gathering membranes may even form enclosed structures called chlorosomes in green sulfur bacteria.The organelles of the endomembrane system are related through direct contact or by the transfer of membrane segments as vesicles. Despite these relationships, the various membranes are not identical in structure and function. The thickness, molecular composition, and metabolic behavior of a membrane are not fixed, they may be modified several times during the membrane's life. One unifying characteristic the membranes share is a lipid bilayer, with proteins attached to either side or traversing them.
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