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Structure of Lmaj006129AAA, a hypothetical protein from Leishmania major.


ABSTRACT: The gene product of structural genomics target Lmaj006129 from Leishmania major codes for a 164-residue protein of unknown function. When SeMet expression of the full-length gene product failed, several truncation variants were created with the aid of Ginzu, a domain-prediction method. 11 truncations were selected for expression, purification and crystallization based upon secondary-structure elements and disorder. The structure of one of these variants, Lmaj006129AAH, was solved by multiple-wavelength anomalous diffraction (MAD) using ELVES, an automatic protein crystal structure-determination system. This model was then successfully used as a molecular-replacement probe for the parent full-length target, Lmaj006129AAA. The final structure of Lmaj006129AAA was refined to an R value of 0.185 (Rfree = 0.229) at 1.60 A resolution. Structure and sequence comparisons based on Lmaj006129AAA suggest that proteins belonging to Pfam sequence families PF04543 and PF01878 may share a common ligand-binding motif.

SUBMITTER: Arakaki T 

PROVIDER: S-EPMC2197200 | biostudies-literature | 2006 Mar

REPOSITORIES: biostudies-literature

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Structure of Lmaj006129AAA, a hypothetical protein from Leishmania major.

Arakaki Tracy T   Le Trong Isolde I   Phizicky Eric E   Quartley Erin E   DeTitta George G   Luft Joseph J   Lauricella Angela A   Anderson Lori L   Kalyuzhniy Oleksandr O   Worthey Elizabeth E   Myler Peter J PJ   Kim David D   Baker David D   Hol Wim G J WG   Merritt Ethan A EA  

Acta crystallographica. Section F, Structural biology and crystallization communications 20060224 Pt 3


The gene product of structural genomics target Lmaj006129 from Leishmania major codes for a 164-residue protein of unknown function. When SeMet expression of the full-length gene product failed, several truncation variants were created with the aid of Ginzu, a domain-prediction method. 11 truncations were selected for expression, purification and crystallization based upon secondary-structure elements and disorder. The structure of one of these variants, Lmaj006129AAH, was solved by multiple-wav  ...[more]

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