TY - JOUR
T1 - Enhancing recombinant protein production in human cell lines with a constitutive transport element and mRNA export proteins
AU - Aihara, Yuki
AU - Fujiwara, Naoko
AU - Yamazaki, Tomohiro
AU - Kambe, Taiho
AU - Nagao, Masaya
AU - Hirose, Yutaka
AU - Masuda, Seiji
N1 - Funding Information:
We thank Dr. T. Kimura and Dr. B.K. Ferber for kindly providing pRSVLUC-CTE and pCMVHATap, respectively. This work was supported by grants-in-aid from the Ministry of Education, Culture, Sports, Science and Technology of Japan, JST in Research for Promoting Technological Seeds, the Noda Institute for Scientific Research, the Suzuken Memorial Foundation and the Asahi Glass Foundation (to S. M.).
PY - 2011/5/20
Y1 - 2011/5/20
N2 - Recent research into mRNA maturation processes in the nucleus has identified a number of proteins involved in mRNA transcription, capping, splicing, end processing and export. Among them, the Tap-p15 heterodimer acts as an mRNA export receptor. Tap-p15 is recruited onto fully processed mRNA in the nucleus, which is ready for export to the cytoplasm, through associating with Aly or SR proteins on mRNA, or by directly associating with a constitutive transport element (CTE), an RNA element derived from type D retroviruses. mRNA containing a CTE is exported to the cytoplasm by directly associating with Tap-p15, even in the absence of Tap-recruiting proteins such as Aly or SR proteins on the mRNA. Here, we showed that the use of a CTE enhanced the expression of recombinant protein in human cell lines. The co-expression of reporter proteins and Tap-p15 also enhanced recombinant protein expression. Moreover, the use of a CTE and Tap-p15 synergistically further enhanced the recombinant protein expression. In addition to Tap-p15, several Tap-p15-recruiting proteins, including Aly and SR proteins, enhanced recombinant protein expression, albeit independently of the CTE. The incorporation of a CTE and Tap-p15-recruiting proteins into protein expression system is useful to increase recombinant protein yield in human cells.
AB - Recent research into mRNA maturation processes in the nucleus has identified a number of proteins involved in mRNA transcription, capping, splicing, end processing and export. Among them, the Tap-p15 heterodimer acts as an mRNA export receptor. Tap-p15 is recruited onto fully processed mRNA in the nucleus, which is ready for export to the cytoplasm, through associating with Aly or SR proteins on mRNA, or by directly associating with a constitutive transport element (CTE), an RNA element derived from type D retroviruses. mRNA containing a CTE is exported to the cytoplasm by directly associating with Tap-p15, even in the absence of Tap-recruiting proteins such as Aly or SR proteins on the mRNA. Here, we showed that the use of a CTE enhanced the expression of recombinant protein in human cell lines. The co-expression of reporter proteins and Tap-p15 also enhanced recombinant protein expression. Moreover, the use of a CTE and Tap-p15 synergistically further enhanced the recombinant protein expression. In addition to Tap-p15, several Tap-p15-recruiting proteins, including Aly and SR proteins, enhanced recombinant protein expression, albeit independently of the CTE. The incorporation of a CTE and Tap-p15-recruiting proteins into protein expression system is useful to increase recombinant protein yield in human cells.
KW - Constitutive transport element
KW - MRNA export
KW - MRNA processing factor
KW - Tap-p15
UR - http://www.scopus.com/inward/record.url?scp=79955765054&partnerID=8YFLogxK
U2 - 10.1016/j.jbiotec.2011.03.024
DO - 10.1016/j.jbiotec.2011.03.024
M3 - 学術論文
C2 - 21473891
AN - SCOPUS:79955765054
SN - 0168-1656
VL - 153
SP - 86
EP - 91
JO - Journal of Biotechnology
JF - Journal of Biotechnology
IS - 3-4
ER -