• ثبت نام
    • ورود به سامانه
    مشاهده مورد 
    •   صفحهٔ اصلی
    • نشریات انگلیسی
    • Molecular Biology Research Communications
    • Volume 5, Issue 1
    • مشاهده مورد
    •   صفحهٔ اصلی
    • نشریات انگلیسی
    • Molecular Biology Research Communications
    • Volume 5, Issue 1
    • مشاهده مورد
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Design of new potent HTLV-1 protease inhibitors: in silico study

    (ندگان)پدیدآور
    Kheirabadi, MitraMaleki, JavadSoufian, SafiehHosseini, Samane
    Thumbnail
    دریافت مدرک مشاهده
    FullText
    اندازه فایل: 
    516.6کیلوبایت
    نوع فايل (MIME): 
    PDF
    نوع مدرک
    Text
    Original article
    زبان مدرک
    English
    نمایش کامل رکورد
    چکیده
    HTLV-1 and HIV-1 are two major causes for severe T-cell leukemia disease and acquired immune deficiency syndrome (AIDS). HTLV-1 protease, a member of aspartic acid protease family, plays important roles in maturation during virus replication cycle. The impairment of these proteases results in uninfectious HTLV-1virions.Similar to HIV-1protease deliberate mutations that confer drug resistance on HTLV-1 are frequently seen in this protease. Therefore, inhibition of HTLV-1 protease activity is expected to disrupt HTLV-1's ability to replicate and infect additional cells. In this study, we initially designed fifteen inhibitory compounds based on the conformations of a class of HIV-1 aspartyl protease inhibitors, sulfonamid-peptoid. Five compounds were chosen based on the goodness of their Drug-Likeness scoreusing “Lipinsk's rule of five". Here, using protein-ligand docking approach we compared the inhibitory constants of these compounds to those available in literatures and observed significantly higher inhibition for two compounds, SP-4 and SP-5. Our data suggest that the addition of two cyclic hydrocarbons to both ends of sulfonamide peptoids leads to the formation of new hydrophobic interactions due to the semi-circular form of these compounds, connecting the first chain of protease to the two ends of tested ligands via Hydrophobic interactions. We conclude that hydrophobic force plays an important role in suppressing protease activity especially for HTLV-1 protease, which in turn prevents the virus maturity. Therefore, designing and development of new ligands based on aromatic hydrocarbons in both ends of inhibitors is very promising for efficient treatment.
    کلید واژگان
    HTLV-1 protease
    HIV protease
    Molecular dynamics dimulation
    Docking
    Drug design

    شماره نشریه
    1
    تاریخ نشر
    2016-03-01
    1394-12-11
    ناشر
    Shiraz University Press
    سازمان پدید آورنده
    Basic Science Department, Faculty of Biology, Hakim Sabzevary University, Sabzevar, Iran
    Basic Science Department, Faculty of Biology, Hakim Sabzevary University, Sabzevar, Iran
    Biology Department, Payame Noor University, Arak, Iran
    Department of stem cells and developmental biology at cell science research center, Royan institute for stem cell biology and technology, ACECR, Tehran, Iran

    شاپا
    2322-181X
    2345-2005
    URI
    https://dx.doi.org/10.22099/mbrc.2016.3483
    http://mbrc.shirazu.ac.ir/article_3483.html
    https://iranjournals.nlai.ir/handle/123456789/444755

    مرور

    همه جای سامانهپایگاه‌ها و مجموعه‌ها بر اساس تاریخ انتشارپدیدآورانعناوینموضوع‌‌هااین مجموعه بر اساس تاریخ انتشارپدیدآورانعناوینموضوع‌‌ها

    حساب من

    ورود به سامانهثبت نام

    آمار

    مشاهده آمار استفاده

    تازه ترین ها

    تازه ترین مدارک
    © کليه حقوق اين سامانه برای سازمان اسناد و کتابخانه ملی ایران محفوظ است
    تماس با ما | ارسال بازخورد
    قدرت یافته توسطسیناوب