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Question.5545 - A eukaryotic cell has several organelles in addition to the plasma membrane. These organelles serve as compartments that provide different local environments that support specific metabolic functions. These distinct compartments allow incompatible processes to occur within a single cell. A researcher made an interesting observation about a protein made by the rough endoplasmic reticulum and eventually used to build a cell’s plasma membrane. The protein in the plasma membrane was actually slightly different from the protein made in the ER. Discuss which organelles were involved in the entire process and why were the proteins different? Track the protein’s path from emergence from the mRNA to forming a part of the plasma membrane. In the context of cellular organization and the classification of organelles, discuss whether or not mitochondria and chloroplasts should be classified within the endomembrane system. In addition, discuss two structural features that help to identify the difference between prokaryotic and eukaryotic cells.

Answer Below:

Hello xxxxxxxxx and xxxxxxxx else xxxxx on xx understanding x membrane xxxxxxx destined xxx the xxxxxx membrane xxxx is xxxxxxxxxxx into xxx rough xxxxxxxxxxx reticulum xxxxxxxx and xxxxxx in xxx Golgi xxxxxxxxx which xx transported xx vesicles xxx finally xxxxxxxx into xxx plasma xxxxxxxx however xxxxxxx on xxxxxxxxx with xxx insights xxxx Allison xxx Reid x research xxx sequence xxx chemical xxxxxx can xx altered xxxxx this xxxxx that xxxxxxxx why xxx final xxxxxxxx protein xxxxxxx slightly xxxx the xxxxxxxx ER xxxxxxx While xxxxxxxxxxxx and xxxxxxxxxxxx are xxx considered xx a xxxx of xxx endomembrane xxxxxx because xxxx tend xx have x distinct xxxxxxxxxxxx origins xxx membrane xxxxxxxxxxxx and xxxxxxxxxxx and xxxxxxxxxx cells xxx be xxxxxxxxxxxxx by xxxxxxxx like xxx presence xx a xxxxxxx and xxxxxxxx bound xxxxxxxxxx Dalton xxxxx In xxxxx of xxxxxxxxx the xxxx of x membrane xxxxxxx the xxxxxxxxxxx of xx integral xxxxxxxx protein xxxx begins xx the xxxx ribosomes xx the xxxxxxx but xxx presence xx an xxxxxxxxxx signal xxxxxxxx directs xxx ribosome xxxxxxx peptide xxxxxxx to xxx RER xxxxxxx the xxxxxx recognition xxxxxxxx and xxx receptors xxxxx co-translational xxxxxxxxxxxxx inserts xxx growing xxxxxxxxxxx into xxx ER xxxxxxxx whereby xx adopts xxx initial xxxxxxxx and xxxxxx folding xxxx the xxxx of xxxxxxxxxx and xxxxxxxxx bond xxxxxxx enzymes xxxxxxxxx Barlowe xxxxxxxx synthesize xxx protein xxxx to xxxxxxx earlier xxxx translational xxxxxxxxxxxx in xxx ER xxxxx particularly xxxxxxxx glycosylation xxx quality xxxxxxx checks xxxxxxxx proper xxxxxxx while xxxxxxxxx folded xxxxxxxx are xxxxxxxx into xxxxxxxxxxxx transport xxxxxxxx that xxx from xx sites xxx moving xx the xxxxxxxx intermediate xxxxxxxxxxx and xxxx fuse xxxx the xxx Golgi xxxxxxxxx Tang xxxxxxxx Why xxx ER xxx plasma xxxxxxxx proteins xxxxxx According xx the xxxxxxxx drawn xxxx Stalder xxx Gershlick xxxxxx the xxxxx stacks xxx protein xxxxxxx gets xxxxxxxx wherein xxxxxx chains xxx trimmed xxx rebuild xxxxxxx or xxxxxxxxx groups xxxxx be xxxxx and xxxxxxxxx lipid xxxxxxxxxxxx can xx adjusted xxxxxx the xxxxxxxxxxxxx segments xxx enzymatic xxxxxxxx modifications xxxxxxx the xxxxxxx s xxxxxxxxxxxx side xxxxxx and xxxxxxxxx its xxxxxxxxxxx processing xxxxx so xxx mature xxxxxx membrane xxxx is xxxxx chemically xxxxxxxx from xxx original xx translated xxxx even xxxxxx they xxxxx from xxx same xxxx On xxx other xxxx at xxx trans-Golgi xxxxxxx the xxxxxxx receptors xxxx to xxxxxxxxx targeting xxxxxxx in xxx luminal xxxxxxx of xxx protein xxx package xx into xxxxxxxx destined xxx the xxxxxx membrane xxxx often xxxxxxx exocytic xx constitutive xxxxxxxxx pathway xxxxxxx vesicles xxx transported xxxxx cytoskeletal xxxxxx and xxxx fusing xxxx the xxxxxx membrane xxxxxxx the xxxxxxx with xxx correct xxxxxxxxxxx also xx is xxxxxxx observed xxxx luminal xxxxxxx facing xxx extracellular xxxxx and xxxxxxxxx domains xxxxxxxxx in xxx cytoplasm xxxxx it xxxxxxxxx as x receptor xxxxxxx or xxxxxxxxxxx Brandizzi xxxxxxx Stalder xxxxxxxxx Endomembrane xxxxxx vs xxxxxxxxxxxx and xxxxxxxxxxxx According xx my xxxxxxxxxxxxx and xxxxxxxx drawn xxxx Dalton xxx Young x research xxxxxxxxxxxx system xxxx to xxxxxxx the xxxxxxx envelope xx Golgi xxxxxxxxx lysosomes xxxxxxxxx transport xxxxxxxx and xxx plasma xxxxxxxx - xxx are xxxxxxxxx by xxxxxxx trafficking xxx sharing x common xxxxxx in xxx secretory xxxxxxx whereby xxxxxxxxxxxx and xxxxxxxxxxxx are xxxxxxxx because xxxx do xxx exchange xxxxxxxx material xxxxxxx vesicles xxxx this xxxxxx and xxxxxxx importing xxxx of xxxxx proteins xxxx the xxxxxxx using xxxxxxxx translocase xxxxxxxxx However xxxxxxxxxxxx and xxxxxxxxxxxx possessing xxxxx own xxx ribosomes xxx double xxxxxxxxx featuring xxxx support xxx endosymbiont xxxxxx that xxxx evolved xxxx ancestral xxxxxxxxxxx instead xxxx inward xxxxxxx of xxx plasma xxxxxxxx like xxx endomembrane xxxxxxxxxx here xxx membrane xxxxxx and xxxxxxx organization xxxxxxxx bacteria xxxx than xxx ER xxxxx continuum xxxxxxx justifying xxxxx separate xxxxxxxxxxxxxx outside xxx endomembrane xxxxxx Dalton xxxxx Prokaryotic xx eukaryotic xxxxx According xx my xxxxxxxxxxxxx from xxx text xxxxxxx by xxxxxx and xxxx one xxxxxxxxx structural xxxxxxxxxx is xxxx eukaryotic xxxxx possessing x membrane xxxxx nucleus xxxxxxxxxx linear xxxxxxxxxxx wherein xxxxxxxxxxx cells xxxxxxx a xxxx nucleus xxx instead xxxxxx circular xxx concentrated xx a xxxxxxxx region xxxx is xxx enclosed xx a xxxxxxxx such x compartmentalization xx eukaryotes xxxxxxx separation xx transcription xxx translation xxxxx in xxxxxxxxxxx the xxxxxxxxx are xxxxxxx coupled xx the xxxxxxxxx However xxxxxxx difference xx the xxxxxxxx of xxxxxxxx bound xxxxxxxxxx like xxx mitochondria xx Golgi xxxxxxxxx and xxxxxxxxx in xxxxxxxxxx cells xxxx enables xxxxxxxxxxxxxxxxx metabolism xx the xxxxx hand xx contrast xx the xxxxxxxxx simpler xxxxxxxx organization xx prokaryotes xxxx lack xxxx organelles xxxxx eukaryotic xxxxx are xxxxxxxxx larger xxx structurally xxxx complex xxxxxxxxxx multicellularity xxx specialized xxxxxxx wherein xxxxxxxxxxx are xxxxxxx smaller xxx unicellular xxxxxx Gair xxxxxxxxxx Allison x Reid x Organization xx the xx Golgi xxxxxxxxx for xxxxxxxx traffic xxxxxxx Nature xxxxxxx Molecular xxxx Biology xxxxx pmc xxxx nlm xxx gov xxxxxxxx PMC xxxxxx L xxxxx R xxxxxxxxxxxx and xxxxxxxxxxxx Fundamentals xx Cell xxxxxxx Retrieved xxxxxxxx from xxxxx open xxxxxxxxxxx education xxxxxxxxxxx chapter xxxxxxxxxxxxxxxxxxxxxxxxxxxxx Brandizzi x Barlowe x Organization xx the xx Golgi xxxxxxxxx for xxxxxxxx traffic xxxxxxx Nature xxxxxxx Molecular xxxx biology x https xxx ncbi xxx nih xxx articles xxx Molnar x Gair x May xxxxxxxxx prokaryotic xxx eukaryotic xxxxx Concepts xx Biology x st xxxxxxxx Edition xxxxx opentextbc xx biology xxxxxxx - xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx Tang x T xxxxxxxx D xxxxx selection xx endoplasmic xxxxxxxxx to xxxxx transport xxx relevant xxxxxxxx The xxxxxxx of xxxxxxxx investigation xxxxx www xxx org xxxxxxxx view xxxxxxx D xxxxxxxxx D x November xxxxxx trafficking xxxxxxxx from xxx Golgi xxxxxxxxx to xxx plasma xxxxxxxx In xxxxxxxx in xxxx developmental xxxxxxx Vol xx - xxxxxxxx Press xxxxx pmc xxxx nlm xxx gov xxxxxxxx PMC

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