4.4 Article

Structure and function of the sterol carrier protein-2 N-terminal presequence

期刊

BIOCHEMISTRY
卷 47, 期 22, 页码 5915-5934

出版社

AMER CHEMICAL SOC
DOI: 10.1021/bi800251e

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资金

  1. NIDDK NIH HHS [DK077573, R00 DK077573, R01 DK041402, K99 DK077573, R01 DK041402-20, K99 DK077573-02, DK41402] Funding Source: Medline
  2. NIGMS NIH HHS [GM63236, R01 GM062326-05, GM31651, R01 GM031651, R01 GM031651-25] Funding Source: Medline

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Although sterol carrier protein-2 (SCP-2) is encoded as a precursor protein (proSCP-2), little is known regarding the structure and function of the 20-amino acid N-terminal presequence. As shown herein, the presequence contains significant secondary structure and alters SCP-2: (i) secondary structure (CD), (ii) tertiary structure (aqueous exposure of Trp shown by UV absorbance, fluorescence, and fluorescence quenching), (iii) ligand binding site [Trp response to ligands, peptide cross-linked by photoactivatable free cholesterol (FCBP)], (iv) selectivity for interaction with anionic phospholipid-rich membranes, (v) interaction with a peroxisomal import protein [FRET studies of Pex5p(C) binding], the N-terminal presequence increased SCP-2's affinity for Pex5p(C) by 10-fold, and (vi) intracellular targeting in living and fixed cells (confocal microscopy). Nearly 5-fold more SCP-2 than proSCP-2 colocalized with plasma membrane lipid rafts and caveolae (AF488-CTB); 2.8-fold more SCP-2 than proSCP-2 colocalized with a mitochondrial marker (Mitotracker), but nearly 2-fold less SCP-2 than proSCP-2 colocalized with peroxisomes (AF488 antibody to PMP70). These data indicate the importance of the N-terminal presequence in regulating SCP-2 structure, cholesterol localization within the ligand binding site, membrane association, and, potentially, intracellular targeting.

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