Chapter 16 - Moving Proteins into Membranes and Organelles

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Nuclear genes

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Nuclear genes

________ take up most of the encoding go of mitochondrial and chloroplast proteins and they also use synthesized ribosomes which are imported into the organelles.

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Glycoproteins

________ may be assisted in their folding by oligosaccharide side proteins, along with helping protect mature proteins from proteolysis, work as antigens and help with cell- cell adhesion.

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Protein disulfide isomerase

________ (PDI) works as a catalyst for the formation and rearrangement of disfutile bonds in the ER lumen.

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O

________- linked oligosaccharides are short and contain one to four sugar residues.

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PTS1

They contain a C- terminal ________ targeting sequence and sometimes an N- terminal PTS2 targeting sequence, which arent cleaved after importing.

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N terminal uptake

The ________ targeting sequence contains the information needed to target precursor proteins.

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SecA protein

The ________ works as the driver for post- translational translocation through the inner membrane.

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SRP

________ and the ________ receptor conduct the insertion of secretory protein in the translocon, and no additional energy is needed for this.

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ER

The ________ binds to the signal recognition particle (SRP) which helps it turn into a nascent secretory protein, which targets the ribosome /nascent chain complex.

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N

________- linked oligosaccharides contain two N- acetylglucosamine and three mannose.

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negative bacteria

Completed proteins can be translocated through gram- ________, and the translocation takes the proteins through a translocon related to eukaryotic cells in the ER.

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cytosolic receptor

If a protein is destined to the peroxisomal matrix, then they bind to a(n) ________ and they are directed to common import receptors along with translocation machinery along the peroxisomal membrane.

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synthesization of peroximal proteins

The ________ occurs on cytosolic ribosomes and they are post- translationally incorporated into the organelle.

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