4.5 Article

Structural characterization of an intrinsically unfolded mini-HBX protein from hepatitis B virus

Journal

MOLECULES AND CELLS
Volume 34, Issue 2, Pages 165-169

Publisher

KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
DOI: 10.1007/s10059-012-0060-z

Keywords

circular dichroism (CD) spectropolarimetry; hepatitis B virus-X (HBX); intrinsically unstructured/unfolded protein (IUP); Nuclear Magnetic Resonance (NMR) spectroscopy; promiscuity; truncated mini-HBX (Tr-HBX)

Funding

  1. Korea Health Technology R&D Project, Ministry of Health and Welfare, Republic of Korea [A101499]
  2. Korea Research Foundation [2010-0022224]
  3. Korea Health Promotion Institute [A101499] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  4. National Research Foundation of Korea [2010-0022224] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The hepatitis B virus x protein (HBX) is expressed in HBVinfected liver cells and can interact with a wide range of cellular proteins. In order to understand such promiscuous behavior of HBX we expressed a truncated mini-HBX protein (named Tr-HBX) (residues 18-142) with 5 Cys -> Ser mutations and characterized its structural features using circular dichroism (CD) spectropolarimetry, NMR spectroscopy as well as bioinformatics tools for predicting disorder in intrinsically unstructured proteins (IUPs). The secondary structural content of Tr-HBX from CD data suggests that Tr-HBX is only partially folded. The protein disorder prediction by IUPred reveals that the unstructured region encompasses its N-terminal similar to 30 residues of Tr-HBX. A two-dimensional H-1-N-15 HSQC NMR spectrum exhibits fewer number of resonances than expected, suggesting that Tr-HBX is a hybrid type IUP where its folded C-terminal half coexists with a disordered N-terminal region. Many IUPs are known to be capable of having promiscuous interactions with a multitude of target proteins. Therefore the intrinsically disordered nature of Tr-HBX revealed in this study provides a partial structural basis for the promiscuous structure-function behavior of HBX.

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