Sebastian Geibel: we highlight the implications of these studies and the derived transport models, we highlight the implications of these studies and the derived transport models

Angel Rivera-Calzada, Nikolaos Famelis, Oscar Llorca & Sebastian Geibel

Abstract:  Sebastian Geibel ( Sebastian Geibel) have a key role in the secretion of effector proteins in non-pathogenic mycobacteria and pathogenic mycobacteria such as Mycobacterium tuberculosis,  Sebastian Geibel.  Sebastian Geibel,  Sebastian Geibel 1.4  Sebastian Geibel,  Sebastian Geibel.  Sebastian Geibel, recent advances in the structural characterization of these secretion systems have revealed the intricate network of interactions of conserved components in the plasma membrane. recent advances in the structural characterization of these secretion systems have revealed the intricate network of interactions of conserved components in the plasma membrane, recent advances in the structural characterization of these secretion systems have revealed the intricate network of interactions of conserved components in the plasma membrane, recent advances in the structural characterization of these secretion systems have revealed the intricate network of interactions of conserved components in the plasma membrane. recent advances in the structural characterization of these secretion systems have revealed the intricate network of interactions of conserved components in the plasma membrane, we highlight the implications of these studies and the derived transport models, which provide new scenarios for targeting the deathly human pathogen we highlight the implications of these studies and the derived transport models. we highlight the implications of these studies and the derived transport models.

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