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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Docking de herbicidas na glutationa transferase tau4-4 de soja (Glycine max) / Docking de herbicidas na glutationa transferase TAU4-4 de soja (Glycine Max)

Mendes, Josiane Enevina 30 March 2011 (has links)
Made available in DSpace on 2016-08-17T18:39:37Z (GMT). No. of bitstreams: 1 3640.pdf: 5869617 bytes, checksum: 4643e7ab6ff128afd74bd3d51d8588f3 (MD5) Previous issue date: 2011-03-30 / Financiadora de Estudos e Projetos / This study, based on molecular docking, describes the search for the most favorable conformations when complexes between herbicides, used in soybean cultivation, and an enzyme involved in the detoxification process are formed and based on these results some guidelines for the developing of new compounds are proposed. The glutathione transferase Tau, GmGSTU4-4, from soybean was the target protein, and diclofop, fluazifop, Clethodim, clomazone, diquat, paraquat, atrazine, diuron, bentazone, acifluorofem, fomesafem, sulfentrazone, glyphosate and clorimurom, the 14 herbicides studied. These last ones were chosen based on the list of those that are used in soybean crops and are registered with the Ministry of Agriculture and Supply of Brasil. For all of them the GmGSTU4-4-herbicide complexes were obtained. The protein binding site, analyzed by molecular visualization, presents an almost cylindrical shape, open and exposed to the solvent and is composed of two sites G and H. Three water molecules were observed in the G-site in that participate in molecular interactions with several of the studied herbicides, This finding suggests that new compounds that could, and should, be developed need to have in their structure chemical groups capable of interacting with the water, both as donors and acceptors of hydrogen bonds. Another interesting finding was that the largest herbicides may occupy both the G and H sites, and seem to be most promising in the activity of detoxification. / Este estudo, baseado em docking molecular, descreve a busca das conformações mais favoráveis para a formação dos complexos alvo-ligante com herbicidas utilizados no cultivo de soja e uma enzima envolvida no processo de desintoxicação, e baseado nestes resultados são propostas algumas diretrizes para o desenvolvimento de novos compostos. A proteína estudada foi a glutationa transferase Tau de soja, a GmGSTU4-4. Foram estudados 14 herbicidas: diclofope, fluazifope, cletodim, clomazona, diquate, paraquate, atrazina, diurom, bentazona, acifluorofem, fomesafem, sulfentrazona, clorimurom e glifosato. A escolha dos herbicidas se baseou na lista daqueles que são utilizados na cultura da soja e estão registrados no Ministério da Agricultura e Abastecimento do Brasil. Foram obtidos os complexos GmGSTU4-4-herbicidas. O sítio de ligação analisado por visualização molecular mostra uma forma quase cilíndrica, aberta e exposta ao solvente e composto de dois sítios G e H. No sítio G foram observadas três moléculas de água que participam de interações moleculares com vários dos herbicidas estudados o que sugere que novos compostos poderiam ser desenvolvidos observando a necessidade da presença de grupos químicos capazes de interagir com a água, tanto como doadores como aceptores de ligações de hidrogênio. Os herbicidas maiores podem ocupar os sítio G e H e parecem ser mais promissores na atividade de desintoxicação.

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