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Molecular assembly of recombinant chicken type II collagen in the yeast Pichia pastoris

Overview of attention for article published in Science China Life Sciences, January 2018
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Title
Molecular assembly of recombinant chicken type II collagen in the yeast Pichia pastoris
Published in
Science China Life Sciences, January 2018
DOI 10.1007/s11427-017-9219-4
Pubmed ID
Authors

Caixia Xi, Nan Liu, Fei Liang, Xiao Zhao, Juan Long, Fang Yuan, Song Yun, Yuying Sun, Yongzhi Xi

Abstract

Effective treatment of rheumatoid arthritis can be mediated by native chicken type II collagen (nCCII), recombinant peptide containing nCCII tolerogenic epitopes (CTEs), or a therapeutic DNA vaccine encoding the full-length CCOL2A1 cDNA. As recombinant CCII (rCCII) might avoid potential pathogenic virus contamination during nCCII preparation or chromosomal integration and oncogene activation associated with DNA vaccines, here we evaluated the importance of propeptide and telopeptide domains on rCCII triple helix molecular assembly. We constructed pC- and pN-procollagen (without N- or Cpropeptides, respectively) as well as CTEs located in the triple helical domain lacking both propeptides and telopeptides, and expressed these in yeast Pichia pastoris host strain GS115 (his4, Mut+) simultaneously with recombinant chicken prolyl-4-hydroxylase α and β subunits. Both pC- and pN-procollagen monomers accumulated inside P. pastoris cells, whereas CTE was assembled into homotrimers with stable conformation and secreted into the supernatants, suggesting that the large molecular weight pC-or pN-procollagens were retained within the endoplasmic reticulum whereas the smaller CTEs proceeded through the secretory pathway. Furthermore, resulting recombinant chicken type II collagen pCα1(II) can induced collagen-induced arthritis (CIA) rat model, which seems to be as effective as the current standard nCCII. Notably, protease digestion assays showed that rCCII could assemble in the absence of C- and N-propeptides or telopeptides. These findings provide new insights into the minimal structural requirements for rCCII expression and folding.

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Mendeley readers

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Geographical breakdown

Country Count As %
Unknown 26 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 19%
Student > Master 4 15%
Researcher 4 15%
Student > Doctoral Student 2 8%
Student > Bachelor 2 8%
Other 2 8%
Unknown 7 27%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 7 27%
Engineering 3 12%
Agricultural and Biological Sciences 3 12%
Chemical Engineering 1 4%
Neuroscience 1 4%
Other 1 4%
Unknown 10 38%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 02 February 2018.
All research outputs
#20,462,806
of 23,020,670 outputs
Outputs from Science China Life Sciences
#774
of 1,009 outputs
Outputs of similar age
#379,355
of 443,116 outputs
Outputs of similar age from Science China Life Sciences
#21
of 34 outputs
Altmetric has tracked 23,020,670 research outputs across all sources so far. This one is in the 1st percentile – i.e., 1% of other outputs scored the same or lower than it.
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We're also able to compare this research output to 34 others from the same source and published within six weeks on either side of this one. This one is in the 1st percentile – i.e., 1% of its contemporaries scored the same or lower than it.