TY - JOUR
T1 - Acquiring insights through a sequence-based approach to the critical Zika virus MTase domain
AU - Atwah, Banan
AU - Alghamdi, Saad
AU - Saeedi, Nizar H.
AU - Alzahrani, Abdulrahman
AU - Alghamdi, Rashed Mohammed
AU - Akber, Asif Hussain
AU - Al Qahtani, Mohammed Yahya
AU - Mujarribi, Atiah Abkar Yahya
AU - Al Qahtani, Saeed Saleh
AU - Faqihi, Ahmed Mohammed
AU - Kamal, Mohammad Azhar
N1 - Publisher Copyright:
© 2024, The Running Line. All rights reserved.
PY - 2024/5
Y1 - 2024/5
N2 - Background: ZIKV is one of the re-emerging arboviruses (viruses carried by arthropods), which is spread through the Aedes mosquito. It is an RNA virus with only one strand that is appropriate to the family Flaviviridae's Flavivirus (genus) & has been linked to other Flaviviruses such as the West Nile virus, chikungunya virus, & dengue (DENV) virus. The envelope, precursor membrane, and capsid are three structural proteins, and seven nonstructural proteins are also encoded by the Zika virus genome. Methods: We conducted an in-silico analysis of the Zika virus' MTase domain protein for this publication. We predicted that methylation would play a significant role in the available Prosite, Pfam, and InterProScan tools to aid in locating the MTase domain. Along with alignment, amino acid composition, charged amino acids, atomic level studies, & molecular weight, we also make predictions for these variables, including theoretical Pi. Results: We also examine the MTase domain's simulated structure (alpha helix, beta sheet, turn) and its specifics, including secondary structure. We also pinpoint the locations where proteins, DNA, and RNA bind. Potential phosphorylation sites can be found on the Ser, Thr, and Tyr residues in the MTase domain. Conclusion: These outcomes imply a complicated interaction between different phosphorylation modifications that modulates the activity of the MTase domain. To fully appreciate the auxiliary and practical perspectives and to clarify the varied roles of PTM in the MTase domain will be a primary goal of future study.
AB - Background: ZIKV is one of the re-emerging arboviruses (viruses carried by arthropods), which is spread through the Aedes mosquito. It is an RNA virus with only one strand that is appropriate to the family Flaviviridae's Flavivirus (genus) & has been linked to other Flaviviruses such as the West Nile virus, chikungunya virus, & dengue (DENV) virus. The envelope, precursor membrane, and capsid are three structural proteins, and seven nonstructural proteins are also encoded by the Zika virus genome. Methods: We conducted an in-silico analysis of the Zika virus' MTase domain protein for this publication. We predicted that methylation would play a significant role in the available Prosite, Pfam, and InterProScan tools to aid in locating the MTase domain. Along with alignment, amino acid composition, charged amino acids, atomic level studies, & molecular weight, we also make predictions for these variables, including theoretical Pi. Results: We also examine the MTase domain's simulated structure (alpha helix, beta sheet, turn) and its specifics, including secondary structure. We also pinpoint the locations where proteins, DNA, and RNA bind. Potential phosphorylation sites can be found on the Ser, Thr, and Tyr residues in the MTase domain. Conclusion: These outcomes imply a complicated interaction between different phosphorylation modifications that modulates the activity of the MTase domain. To fully appreciate the auxiliary and practical perspectives and to clarify the varied roles of PTM in the MTase domain will be a primary goal of future study.
KW - Binding sites
KW - I-TASSER
KW - InterProScan
KW - Pfam
KW - Phyre2
KW - Posttranslational modification
KW - Prosite
KW - Secondary structure
KW - SOPMA
KW - α-helix
UR - http://www.scopus.com/inward/record.url?scp=85194139578&partnerID=8YFLogxK
U2 - 10.62940/als.v11i2.2574
DO - 10.62940/als.v11i2.2574
M3 - Article
AN - SCOPUS:85194139578
SN - 2310-5380
VL - 11
SP - 430
EP - 437
JO - Advancements in Life Sciences
JF - Advancements in Life Sciences
IS - 2
ER -