Co-translational import into the endoplasmic reticulum (ER) is primarily controlled by N-terminal signal sequences that mediate targeting of the ribosome-nascent chain complex to the Sec61/translocon and initiate the translocation process. Here we show that after targeting to the translocon the secondary structure of the nascent polypeptide chain can significantly modulate translocation efficiency. ER-targeted polypeptides dominated by unstructured domains failed to efficiently translocate into the ER lumen and were subjected to proteasomal degradation via a co-translocational/preemptive pathway. Productive ER import could be reinstated by increasing the amount of α-helical domains, whereas more effective ER signal sequences had only a mino...
The endoplasmic reticulum (ER) uses an elaborate surveillance system called the ER quality control (...
More than 30% of human genes encode secretory or membrane proteins. Most secretory proteins are targ...
The Sec61 translocon accommodates ER-targeted polypeptides including membrane proteins and secretory...
SummaryThe ER's capacity to process proteins is limited, and stress caused by accumulation of unfold...
The metazoan Sec61 translocon transports polypeptides into and across the membrane of the endoplasmi...
AbstractProtein folding within the endoplasmic reticulum (ER) of eukaryotic cells is erroneous and o...
The primary structure of polypeptides is converted to their final tertiary and quaternary structure ...
AbstractProteins destined for the endomembrane system of eukaryotic cells are typically translocated...
SummaryEukaryotic proteins entering the secretory pathway are translocated into the ER by signal seq...
All cellular proteins are subject to quality control “decisions,” which help to prevent or delay a m...
The endoplasmic reticulum (ER) is an intracellular compartment dedicated to the synthesis and matur...
Proteins destined for the secretory pathway must first fold and assemble in the lumen of endoplasmic...
<div><p>The metazoan Sec61 translocon transports polypeptides into and across the membrane of the en...
The metazoan Sec61 translocon transports polypeptides into and across the membrane of the endoplasmi...
Quality control of protein folding inside the endoplasmic reticulum (ER) includes chaperone-mediate...
The endoplasmic reticulum (ER) uses an elaborate surveillance system called the ER quality control (...
More than 30% of human genes encode secretory or membrane proteins. Most secretory proteins are targ...
The Sec61 translocon accommodates ER-targeted polypeptides including membrane proteins and secretory...
SummaryThe ER's capacity to process proteins is limited, and stress caused by accumulation of unfold...
The metazoan Sec61 translocon transports polypeptides into and across the membrane of the endoplasmi...
AbstractProtein folding within the endoplasmic reticulum (ER) of eukaryotic cells is erroneous and o...
The primary structure of polypeptides is converted to their final tertiary and quaternary structure ...
AbstractProteins destined for the endomembrane system of eukaryotic cells are typically translocated...
SummaryEukaryotic proteins entering the secretory pathway are translocated into the ER by signal seq...
All cellular proteins are subject to quality control “decisions,” which help to prevent or delay a m...
The endoplasmic reticulum (ER) is an intracellular compartment dedicated to the synthesis and matur...
Proteins destined for the secretory pathway must first fold and assemble in the lumen of endoplasmic...
<div><p>The metazoan Sec61 translocon transports polypeptides into and across the membrane of the en...
The metazoan Sec61 translocon transports polypeptides into and across the membrane of the endoplasmi...
Quality control of protein folding inside the endoplasmic reticulum (ER) includes chaperone-mediate...
The endoplasmic reticulum (ER) uses an elaborate surveillance system called the ER quality control (...
More than 30% of human genes encode secretory or membrane proteins. Most secretory proteins are targ...
The Sec61 translocon accommodates ER-targeted polypeptides including membrane proteins and secretory...