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Structure-function studies of the SLC17 transporter sialin identify crucial residues and substrate-induced conformational changes.


ABSTRACT: Salla disease and infantile sialic acid storage disorder are human diseases caused by loss of function of sialin, a lysosomal transporter that mediates H(+)-coupled symport of acidic sugars N-acetylneuraminic acid and glucuronic acid out of lysosomes. Along with the closely related vesicular glutamate transporters, sialin belongs to the SLC17 transporter family. Despite their critical role in health and disease, these proteins remain poorly understood both structurally and mechanistically. Here, we use substituted cysteine accessibility screening and radiotracer flux assays to evaluate experimentally a computationally generated three-dimensional structure model of sialin. According to this model, sialin consists of 12 transmembrane helices (TMs) with an overall architecture similar to that

SUBMITTER: Courville P 

PROVIDER: S-EPMC2885210 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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