79 research outputs found
TssA forms a gp6-like ring attached to the type VI secretion sheath
The type VI secretion system (T6SS) is a supra-molecular bacterial
complex that resembles phage tails. It is a killing machine which
fires toxins into target cells upon contraction of its TssBC sheath.
Here, we show that TssA1 is a T6SS component forming dodecameric ring structures whose dimensions match those of the
TssBC sheath and which can accommodate the inner Hcp tube.
The TssA1 ring complex binds the T6SS sheath and impacts its
behaviour in vivo. In the phage, the first disc of the gp18 sheath
sits on a baseplate wherein gp6 is a dodecameric ring. We found
remarkable sequence and structural similarities between TssA1
and gp6 C-termini, and propose that TssA1 could be a baseplate
component of the T6SS. Furthermore, we identified similarities
between TssK1 and gp8, the former interacting with TssA1 while
the latter is found in the outer radius of the gp6 ring. These observations, combined with similarities between TssF and gp6Nterminus or TssG and gp53, lead us to propose a comparative
model between the phage baseplate and the T6SS
Iridium-catalyzed C–H borylation of pyridines
The iridium-catalysed C–H borylation is a valuable and attractive method for the preparation of aryl and heteroaryl boronates. However, application of this methodology for the preparation of pyridyl and related azinyl boronates can be challenged by low reactivity and propensity for rapid protodeborylation, particularly for a boronate ester ortho to the azinyl nitrogen. Competition experiments have revealed that the low reactivity is due to inhibition of the active catalyst through coordination of the azinyl nitrogen lone pair at the vacant site on the iridium. This effect can be overcome through the incorporation of a substituent at C-2. Moreover, when this is sufficiently electron-withdrawing protodeborylation is sufficiently slowed to permit isolation and purification of the C-6 boronate ester. Following functionalization, reduction of the directing C-2 substituent provides the product arising from formal ortho borylation of an unhindered pyridine ring
THE MOLECULAR MECHANISM OF SUBSTRATE RECOGNITION AND CATALYSIS OF THE MEMBRANE ACYLTRANSFERASE PatA -- Complex of PatA with palmitate, mannose, and palmitoyl-6-mannose
Rv2466c Mediates the Activation of TP053 To Kill Replicating and Non-replicating Mycobacterium tuberculosis
A Native Ternary Complex of Alpha-1,3-Galactosyltransferase (alpha-3GalT) Supports a Conserved Reaction Mechanism for Retaining Glycosyltransferases - Unliganded alpha-3GalT
A Native Ternary Complex of Alpha-1,3-Galactosyltransferase (a-3GalT) Supports a Conserved Reaction Mechanism for Retaining Glycosyltransferases - alpha-3GalT in complex with Co2+, UDP-Gal and lactose - a3GalT-Co2+-UDP-Gal-LAT-1
A Native Ternary Complex of Alpha-1,3-Galactosyltransferase (a-3GalT) Supports a Conserved Reaction Mechanism for Retaining Glycosyltransferases - alpha-3GalT in complex with Co2+, UDP-Gal and lactose - a3GalT-Co2+-UDP-Gal-LAT-2
A Native Ternary Complex of Alpha-1,3-Galactosyltransferase (a3GalT) Supports a Conserved Reaction Mechanism for Retaining Glycosyltransferases - a3GalT in complex with lactose - a3GalT-LAT
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