Hungarian Brain Research Program(2017-1.2.1-NKP-2017-00002)
(GINOP-2.3.2-15-2016-00001)
Szakterületek:
Természettudományok
Tudomány
Sarcomeres are extremely highly ordered macromolecular assemblies where structural
organization is intimately linked to their functionality as contractile units. Although
the structural basis of actin and Myosin interaction is revealed at a quasiatomic
resolution, much less is known about the molecular organization of the I-band and
H-zone. We report the development of a powerful nanoscopic approach, combined with
a structure-averaging algorithm, that allowed us to determine the position of 27 sarcomeric
proteins in Drosophila melanogaster flight muscles with a quasimolecular, ∼5- to 10-nm
localization precision. With this protein localization atlas and template-based protein
structure modeling, we have assembled refined I-band and H-zone models with unparalleled
scope and resolution. In addition, we found that actin regulatory proteins of the
H-zone are organized into two distinct layers, suggesting that the major place of
thin filament assembly is an M-line–centered narrow domain where short actin oligomers
can form and subsequently anneal to the pointed end.