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细胞摄取pAntp肽的物理化学要求。脂质结合亲和力的作用。

Physico-chemical requirements for cellular uptake of pAntp peptide. Role of lipid-binding affinity.

作者信息

Drin G, Mazel M, Clair P, Mathieu D, Kaczorek M, Temsamani J

机构信息

Synt:em, Parc Scientifique Georges Besse, Nimes, France.

出版信息

Eur J Biochem. 2001 Mar;268(5):1304-14. doi: 10.1046/j.1432-1327.2001.01997.x.

Abstract

The pAntp peptide, corresponding to the third helix of the Antennapedia homeodomain, is internalized by a receptor-independent process into eucaryotic cells. The precise mechanism of entry remains unclear but the interaction between the phospholipids of plasma membrane and pAntp is probably involved in the translocation process. In order to define the role of peptide-lipid interaction in this mechanism and the physico-chemical properties that are necessary for an efficient cellular uptake, we have carried out an Ala-Scan mapping. The peptides were labeled with a fluorescent group (7-nitrobenz-2-oxo-1,3-diazol-4-yl-; NBD) and their cell association was measured by flow cytometry. Furthermore, we determined the fraction of internalized peptide by using a dithionite treatment. Comparison between cell association and cell uptake suggests that the affinity of pAntp for the plasma membrane is required for the import process. To further investigate which are the physico-chemical requirements for phospholipid-binding of pAntp, we have determined the surface partition coefficient of peptides by titrating them with phospholipid vesicles having different compositions. In addition, we estimated by circular dichroism the conformation adopted by these peptides in a membrane-mimetic environment. We show that the phospholipid binding of pAntp depends on its helical amphipathicity, especially when the negative surface charge density of phospholipid vesicles is low. The cell uptake of pAntp, related to lipid-binding affinity, requires a minimal hydrophobicity and net charge. As pAntp does not seem to translocate through an artificial phospholipid bilayer, this might indicate that it could interact with other cell surface components or enters into cells by a nonelucidated biological mechanism.

摘要

pAntp肽对应于触角足同源异型域的第三个螺旋,通过一种不依赖受体的过程内化进入真核细胞。其确切的进入机制尚不清楚,但质膜磷脂与pAntp之间的相互作用可能参与了转运过程。为了确定肽 - 脂质相互作用在该机制中的作用以及高效细胞摄取所需的物理化学性质,我们进行了丙氨酸扫描图谱分析。这些肽用荧光基团(7 - 硝基苯 - 2 - 氧代 - 1,3 - 二唑 - 4 - 基;NBD)标记,通过流式细胞术测量它们与细胞的结合情况。此外,我们使用连二亚硫酸盐处理来确定内化肽的比例。细胞结合与细胞摄取之间的比较表明,pAntp对质膜的亲和力是导入过程所必需的。为了进一步研究pAntp与磷脂结合的物理化学要求是什么,我们通过用具有不同组成的磷脂囊泡滴定肽来确定肽的表面分配系数。此外,我们通过圆二色性估计这些肽在模拟膜环境中所采用的构象。我们表明,pAntp与磷脂的结合取决于其螺旋两亲性,特别是当磷脂囊泡的负表面电荷密度较低时。与脂质结合亲和力相关的pAntp的细胞摄取需要最小的疏水性和净电荷。由于pAntp似乎不会穿过人工磷脂双层,这可能表明它可能与其他细胞表面成分相互作用,或者通过一种尚未阐明的生物学机制进入细胞。

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