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Golgi apparatus

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

Golgi apparatus <p>The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network.  40,000x</p>

Golgi apparatus

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

 - Transport vesicles <p>The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network.  40,000x</p>

- Transport vesicles

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

 - Cis face <p>The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network.  40,000x</p>

- Cis face

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

 - Trans face <p>The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network.  40,000x</p>

- Trans face

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

Nucleus <p>The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network.  40,000x</p>

Nucleus

The Golgi consists of stacks of smooth, membranous sacs, usually located near the nucleus. Newly synthesized proteins are transferred from the RER by transport vesicles, which fuse with the forming, or cis, face of the Golgi. Proteins move through the Golgi, are modified, and eventually exit in vesicles derived from the maturing, or trans, face. These vesicles, along with microtubules, form the trans-Golgi network. 40,000x

Centrioles > <p>Centrioles are composed of microtubules and are found in pairs, called the diplosome, near the trans face of the Golgi apparatus. Centrioles extend microtubules that transport the newly-formed vesicles throughout the cytoplasm.</p>

Centrioles >

Centrioles are composed of microtubules and are found in pairs, called the diplosome, near the trans face of the Golgi apparatus. Centrioles extend microtubules that transport the newly-formed vesicles throughout the cytoplasm.