4.7 Article

In Vitro Selection and Characterization of HIV-1 Variants with Increased Resistance to LP-40, Enfuvirtide-Based Lipopeptide Inhibitor

Journal

Publisher

MDPI
DOI: 10.3390/ijms23126638

Keywords

HIV-1; gp41; fusion inhibitor; resistance; LP-40; T20

Funding

  1. CAMS Innovation Fund for Medical Sciences [2021-I2M-1037, 2017-I2M-1-014]
  2. National Natural Science Foundation of China [81630061, 82002150]

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In this study, we investigated the effect of C16 modification on the resistance barrier of the inhibitor LP-40. The results showed that the LP-40 activity is enhanced and that it has a high resistance barrier. LP-40 and T20 have similar resistance mutation sites.
In our previous work, we replaced the TRM (tryptophan-rich motif) of T20 (Enfuvirtide) with fatty acid (C16) to obtain the novel lipopeptide LP-40, and LP-40 displayed enhanced antiviral activity. In this study, we investigated whether the C16 modification could enhance the high-resistance barrier of the inhibitor LP-40. To address this question, we performed an in vitro simultaneous screening of HIV-1(NL4-3) resistance to T20 and LP-40. The mechanism of drug resistance for HIV-1 Env was further studied using the expression and processing of the Env glycoprotein, the effect of the Env mutation on the entry and fusion ability of the virus, and an analysis of changes to the gp41 core structure. The results indicate that the LP-40 activity is enhanced and that it has a high resistance barrier. In a detailed analysis of the resistance sites, we found that mutations in L33S conferred a stronger resistance, except for the well-recognized mutations in amino acids 36-45 of gp41 NHR, which reduced the inhibitory activity of the CHR-derived peptides. The compensatory mutation of eight amino acids in the CHR region (NDQEEDYN) plays an important role in drug resistance. LP-40 and T20 have similar resistance mutation sites, and we speculate that the same resistance profile may arise if LP-40 is used in a clinical setting.

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