Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication

Several anti-HIV scaffolds have been proposed as complementary treatments to highly active antiretroviral therapy. Ank(GAG)1D4, a designed ankyrin repeat protein, formerly demonstrated anti-HIV-1 replication by interfering with HIV-1 Gag polymerization. However, the improvement of the effectiveness...

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Main Authors: Juntit, On-anong, Sornsuwan, Kanokporn, Wisitponchai, Tanchanok, Lee, Vannajan Sanghiran, Sakkhachornphop, Supachai, Yasamut, Umpa, Tayapiwatana, Chatchai
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Published: MDPI 2023
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Online Access:http://eprints.um.edu.my/38511/
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spelling my.um.eprints.385112023-11-24T08:23:54Z http://eprints.um.edu.my/38511/ Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication Juntit, On-anong Sornsuwan, Kanokporn Wisitponchai, Tanchanok Lee, Vannajan Sanghiran Sakkhachornphop, Supachai Yasamut, Umpa Tayapiwatana, Chatchai QD Chemistry QH301 Biology Several anti-HIV scaffolds have been proposed as complementary treatments to highly active antiretroviral therapy. Ank(GAG)1D4, a designed ankyrin repeat protein, formerly demonstrated anti-HIV-1 replication by interfering with HIV-1 Gag polymerization. However, the improvement of the effectiveness was considered. Recently, the dimeric molecules of Ank(GAG)1D4 were accomplished in enhancing the binding activity against HIV-1 capsid (CAp24). In this study, the interaction of CAp24 against the dimer conformations was elucidated to elaborate the bifunctional property. The accessibility of the ankyrin binding domains was inspected by bio-layer interferometry. By inverting the second module of dimeric ankyrin (Ank(GAG)1D4(NC-CN)), the CAp24 interaction K-D was significantly reduced. This reflects the capability of Ank(GAG)1D4(NC-CN) in simultaneously capturing CAp24. On the contrary, the binding activity of dimeric Ank(GAG)1D4(NC-NC) was indistinguishable from the monomeric Ank(GAG)1D4. The bifunctional property of Ank(GAG)1D4(NC-CN) was subsequently confirmed in the secondary reaction with additional p17p24. This data correlates with the MD simulation, which suggested the flexibility of the Ank(GAG)1D4(NC-CN) structure. The CAp24 capturing capacity was influenced by the distance of the Ank(GAG)1D4 binding domains to introduce the avidity mode of Ank(GAG)1D4(NC-CN). Consequently, Ank(GAG)1D4(NC-CN) showed superior potency in interfering with HIV-1 NL4-3 WT and HIV-1 NL4-3 MIRCAI201V replication than Ank(GAG)1D4(NC-NC) and an affinity improved Ank(GAG)1D4-S45Y. MDPI 2023-03 Article PeerReviewed Juntit, On-anong and Sornsuwan, Kanokporn and Wisitponchai, Tanchanok and Lee, Vannajan Sanghiran and Sakkhachornphop, Supachai and Yasamut, Umpa and Tayapiwatana, Chatchai (2023) Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication. International Journal of Molecular Sciences, 24 (6). ISSN 1661-6596, DOI https://doi.org/10.3390/ijms24065266 <https://doi.org/10.3390/ijms24065266>. 10.3390/ijms24065266
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QD Chemistry
QH301 Biology
spellingShingle QD Chemistry
QH301 Biology
Juntit, On-anong
Sornsuwan, Kanokporn
Wisitponchai, Tanchanok
Lee, Vannajan Sanghiran
Sakkhachornphop, Supachai
Yasamut, Umpa
Tayapiwatana, Chatchai
Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
description Several anti-HIV scaffolds have been proposed as complementary treatments to highly active antiretroviral therapy. Ank(GAG)1D4, a designed ankyrin repeat protein, formerly demonstrated anti-HIV-1 replication by interfering with HIV-1 Gag polymerization. However, the improvement of the effectiveness was considered. Recently, the dimeric molecules of Ank(GAG)1D4 were accomplished in enhancing the binding activity against HIV-1 capsid (CAp24). In this study, the interaction of CAp24 against the dimer conformations was elucidated to elaborate the bifunctional property. The accessibility of the ankyrin binding domains was inspected by bio-layer interferometry. By inverting the second module of dimeric ankyrin (Ank(GAG)1D4(NC-CN)), the CAp24 interaction K-D was significantly reduced. This reflects the capability of Ank(GAG)1D4(NC-CN) in simultaneously capturing CAp24. On the contrary, the binding activity of dimeric Ank(GAG)1D4(NC-NC) was indistinguishable from the monomeric Ank(GAG)1D4. The bifunctional property of Ank(GAG)1D4(NC-CN) was subsequently confirmed in the secondary reaction with additional p17p24. This data correlates with the MD simulation, which suggested the flexibility of the Ank(GAG)1D4(NC-CN) structure. The CAp24 capturing capacity was influenced by the distance of the Ank(GAG)1D4 binding domains to introduce the avidity mode of Ank(GAG)1D4(NC-CN). Consequently, Ank(GAG)1D4(NC-CN) showed superior potency in interfering with HIV-1 NL4-3 WT and HIV-1 NL4-3 MIRCAI201V replication than Ank(GAG)1D4(NC-NC) and an affinity improved Ank(GAG)1D4-S45Y.
format Article
author Juntit, On-anong
Sornsuwan, Kanokporn
Wisitponchai, Tanchanok
Lee, Vannajan Sanghiran
Sakkhachornphop, Supachai
Yasamut, Umpa
Tayapiwatana, Chatchai
author_facet Juntit, On-anong
Sornsuwan, Kanokporn
Wisitponchai, Tanchanok
Lee, Vannajan Sanghiran
Sakkhachornphop, Supachai
Yasamut, Umpa
Tayapiwatana, Chatchai
author_sort Juntit, On-anong
title Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
title_short Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
title_full Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
title_fullStr Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
title_full_unstemmed Dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede HIV-1 replication
title_sort dimeric ankyrin with inverted module promotes bifunctional property in capturing capsid to impede hiv-1 replication
publisher MDPI
publishDate 2023
url http://eprints.um.edu.my/38511/
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score 13.19449