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S Dávila

Publications and source records attributed to S Dávila.

2 recordsLinked to original sources

Reciprocal domain evolution within a transactivator in a restricted sequence space.

offhough the concept of domain merging and shuffling as a major force in protein evolution is well established, it has been difficult to demonstrate how domains coadapt. Here we show evidence of coevolution of the Sinorhizobium meliloti NifA (SmNifA) domains. We found that, because of the lack of a conserved glycine in its DNA-binding domain, this transactivator protein interacts weakly with the enhancers. This defect, however, was compensated by evolving a highly efficient activation domain that, contrasting to Bradyrhizobium japonicum NifA (BjNifA), can activate in trans. To explore paths that lead to this enhanced activity, we mutagenized BjNifA. After three cycles of mutagenesis and selection, a highly active derivative was obtained. Strikingly, all mutations changed to amino acids already present in SmNifA. Our artificial process thus recreated the natural evolution followed by this protein and suggests that NifA is trapped in a restricted sequence space with very limited solutions for higher activity by point mutation.

Amino Acid Sequence↗

Spontaneous thrombosis of an intracranial aneurysm.

A case of spontaneous thrombosis of a previously ruptured anterior communicating artery aneurysm is reported. The patient was referred by another hospital to our service 4 months after the bleeding episode. He had developed a symptomatic normal pressure hydrocephalus, successfully treated by ventriculoperitoneal shunt. Follow-up angiographies, the first performed 4 months and the second 1 year after the bleeding, did not show the aneurysm. Furthermore, the parent artery was not occluded. The literature relative to the subject is reviewed and the possible mechanisms of spontaneous thrombosis are discussed.

Humans↗