In silico analysis of V48A dihydropteroate synthase mutation to dapsone on Mycobacterium leprae from Papua

Y. Maladan, H. Krismawati, H. Hutapea, A. Oktavian
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引用次数: 0

Abstract

Latar belakang: Lepra merupakan penyakit yang disebabkan oleh Mycobacterium leprae. Resistensi obat merupakan salah satu tantangan dalam pemberantasan kusta khususnya di Papua. Adanya mutasi pada gen folP1 penyandi dihydropteroate synthase (DHPS) merupakan dasar untuk deteksi molekuler resistensi dapson pada penyakit lepra. Tujuan penelitian ini adalah mendeteksi mutasi pada gen folP1 Mycobacterium leprae dari Papua, Indonesia dan menganalisis pengaruh mutasi tersebut terhadap dapson dengan metode in silico. Metode: Identifikasi mutasi pada gen folp1 M. leprae dilakukan melalui proses Basic Local Alignment Search Tool (BLAST) di gene bank. Analisis efek mutasi dengan menggunakan server Have (y) Our Protein Explained (HOPE). Prediksi binding pocket menggunakan Computed Atlas of Surface Topography of proteins (CASTp). Homologi modeling struktur 3D DHPS menggunakan server Iterative Threading ASSEmbly Refinement (I TASSER). Analisis docking dengan menggunakan AutoDock Vina yang terintegrasi dengan aplikasi Python Prescription (PyRx). Hasil: Hasil sekuensing menunjukkan adanya variasi dalam gen folP1 M. leprae yaitu perubahan dari Timin (T) menjadi Sitosin (C) pada nukleotida 143. Residu yang bermutasi (V48A) terletak pada domain yang penting untuk aktivitas protein dan kontak dengan residu di domain lain. Ada kemungkinan bahwa interaksi ini penting untuk fungsi protein secara benar. Mutan V48A tidak banyak mempengaruhi stabilitas dari dihydropteroate synthase M. leprae. Kesimpulan: Berdasarkan analisis molecular docking, mutasi V48A tidak mempengaruhi binding affinity dapson terhadap dihydropteroate synthase M. leprae. Hasil ini menunjukkan mutan V48A kemungkinan tetaprentan terhadap dapson. Dengan demikian perlu dilakukan uji in vivo untuk mengkofirmasi efek mutasi V48A. Kata kunci: Mycobacterium leprae, folP1 gene, dihydropteroate synthase, dapson   Abstract Background: Leprosy is a disease caused by Mycobacterium leprae. Drug resistance is one of the challenges in leprosy elimination especially in Papua. The presence of mutations in folP1 gene that encode dihydropteroate synthase (DHPS) was considered as the exclusive basis for molecular detection of dapsone resistance in leprosy. The objective of this study was to detect mutations in the folP1 gene of Mycobacterium leprae from Papua, Indonesia and to analyze the effect of these mutations on dapsone using the in-silico method. Methods: Identification of mutations in the folp1 M. leprae gene is carried out through the Basic Local Alignment Search Tool (BLAST) process in the gene bank. The analysis of the effects of mutations using the Have (y)Our Protein Explained (HOPE) server. Bindings pocket prediction is done using the Computed Atlas of Surface Topography of proteins (CASTp). Homology modeling 3D structure of DHPS using the Iterative Threading ASSEmbly Refinement (I-TASSER) server. Docking analysis was performed using AutoDock Vina which is integrated with the Python Prescription (PyRx) application. Results: The sequencing results showed a variation in the folP1 M. leprae gene, namely a change from thymine (T) to cytosine (C) in nucleotide 143. The mutated residue (V48A) is in a domain that is essential for the activity of the protein and in contact with residues in another domain. It is possible that this interaction is important for the correct function of the protein. V48A mutants did not significantly affect the stability of DHPS M. leprae. Conclusion: Based on molecular docking analysis, this mutation does not affect binding affinity dapsone against M. leprae dihydropteroate synthase. These results indicate that the V48A mutant is likely to remain susceptible to dapsone. Thus, it is necessary to do an in vivo test to confirm the effect of the V48A mutation. Keywords: Mycobacterium leprae, folP1 gene, dihydropteroate synthase, dapsone
巴布亚麻风分枝杆菌对氨苯砜的V48A二氢蝶呤合成酶突变的计算机分析
背景:麻风病是一种由黄斑杆菌引起的疾病。抗药性是消灭麻风病的挑战之一,尤其是在巴布亚。folP1基因中的突变是麻疯病分子抗dapson检测的基础。该研究的目的是检测来自印度尼西亚巴布亚的folP1 Mycobacterium leprae基因中的突变,并在硅可中分析突变对dapson的影响。方法:识别folp1 M. leprae基因中的突变是通过基因银行的基本重组工具过程进行的。利用我们的希望牌蛋白质分析突变的影响。预测袖珍使用计算机计算机图集处理蛋白质。基于DHPS的同义结构模型,使用快速组装组装refinser服务器。通过与Python Prescription (PyRx)应用程序集成自动维纳进行对接分析。结果:序列结果显示,卵磷脂基因的变化从核苷酸(T)到核苷酸(C)的变化。突变残留物(V48A)位于对蛋白质活动至关重要的域,并与其他域的残留物接触。有可能这种相互作用对蛋白质的正常功能至关重要。V48A突变体对M. leprae二氢前体的稳定性没有多大影响。结论:根据分子对接分析,V48A突变不会影响二氢戊二酸合成酶。结果表明,V48A突变体仍然易受dapson的影响。因此,需要进行体内测试来验证V48A突变的影响。关键词:Mycobacterium leprae, folP1 gene, dihydrop水联合成器,dapson Abstract背景:Leprosy是一种由leprae引起的疾病。毒品阻力是leprosy淘汰的挑战之一,尤其是巴布亚。在leprosy的dapsone抵抗组织中,encode dihydrophorate synthase (DHPS)的突变表现被认为是专利分子探测基础。这项研究的目的是在来自印度尼西亚巴布亚的甲菌斑基因文件夹1中发现突变,并通过二氧化硅的方法分析这些dapsone突变的效果。方法:在M. leprae基因的基础搜索工具过程中发现突变。利用我们宝贵的蛋白质供应服务器对突变影响的分析。袖珍介质是使用计算机图谱的蛋白质谱完成的。基于DHPS的同质模型3D模型的结构使用了服务器的重复组装。Docking分析是使用Python处方Vina自定义应用程序进行的结果。结果:基因序列在M. leprae基因中出现了变化,从蒂尔胺到细胞素(C)的变化在143核。突变缺陷(V48A)是在一个域内,对蛋白质的活跃至关重要,并与其他域的剩余物质接触。这可能是对蛋白质的正确作用至关重要的。V48A突变体的稳定性与DHPS M. leprae无关。结论:基于分子分析,这种突变并不影响M. leprae对二氢戊二酸合成器的影响。这些不可逆转的结果表明,V48A变种人很可能就像将其固定在dapsone上。因此,有必要进行一个病毒测试,以确认V48A变异的效果。键盘:钴leprae, folP1 gene,二氢戊二酸合成器,dapsone
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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