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N-Terminal pI Determines the Solubility of a Recombinant Protein Lacking an Internal Transmembrane-like Domain in E. coli
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  • N-Terminal pI Determines the Solubility of a Recombinant Protein Lacking an Internal Transmembrane-like Domain in E. coli
  • N-Terminal pI Determines the Solubility of a Recombinant Protein Lacking an Internal Transmembrane-like Domain in E. coli
저자명
Lee. Sang-Jun,Han. Yun-Hee,Kim. Young-Ok,Nam. Bo-Hye,Kong. Hee-Jeong,Kim. Kyung-Kil
간행물명
Molecules and cells
권/호정보
2010년|30권 2호|pp.127-135 (9 pages)
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한국분자세포생물학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

We examined whether the isoelectric point (pI) of the N-terminal region of the recombinant protein 7xMefp1 acts as a universal index for expression of the protein in soluble form in E. coli. Expression analysis of 7xMefp1 fused to various N-terminal sequences with pI values ranging from 2.73 to 13.35 yielded three pI range-specific curves (acidic, neutral, and alkaline curves at pI 2.73-3.25, 4.61-9.58, and 9.90-13.35, respectively) for soluble expression (by facilitated diffusion) as a proportion of total protein. For neutral N-termini (pI 4.61-9.58), the total amount of rMefp1 expressed was minimally affected by ${Delta}G_{RNA}$ for unfolding the mRNA secondary structure. The highly hydrophilic nature of longer N-terminal sequences with strongly acidic and alkaline pI values reduced the translation of rMefp1-encoding transcripts, thereby reducing the amount of soluble rMefp1 produced. After characterizing both feedback and non-feedback regulation in the acidic, alkaline, and neutral pI ranges, we suggest that three different pI range-specific soluble expression curves exist for the recombinant protein, each defined by specific ranges of the leader sequence pI values.