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Liao, M.

Publications and source records attributed to Liao, M..

3 recordsLinked to original sources

Cryo-electron microscopy structure of the lipid droplet-formation protein seipin

Sui et al. report the cryo-EM structure of the conserved luminal domain of the lipid droplet (LD)-formation protein seipin. The structure reveals key features of this domain and suggest a new model for seipins role in LD formation.\n\nMetabolic energy is stored in cells primarily as triacylglycerols in lipid droplets (LDs), and LD dysregulation leads to metabolic diseases. The formation of monolayer-bound LDs from the endoplasmic reticulum (ER) bilayer is poorly understood, but the ER protein seipin is essential to this process. Here, we report a cryo-electron microscopy structure and functional characterization of D. melanogaster seipin. The structure reveals a ring-shaped dodecamer, with the luminal domain of each monomer resolved at [~]4.0 [A]. Each luminal domain monomer exhibits two distinctive features: a hydrophobic helix positioned towards the ER bilayer, and a {beta}-sandwich domain that has structural similarity with lipid-binding proteins. This structure, and our functional testing in cells, suggest a model in which seipin oligomers initially detect forming LDs in the ER via hydrophobic helices and subsequently act as membrane anchors to enable lipid transfer and LD growth.

cell biology

Differential expression of an alternative splice variant of IL-12Rβ1 impacts early dissemination in the mouse and associates with disease outcome in both mouse and humans exposed to tuberculosis

Experimental mouse models of TB suggest that early events in the lung impact immunity. Early events in the human lung in response to TB are difficult to probe and their impact on disease outcome is unknown. We have shown in mouse that a secreted alternatively-spliced variant of IL-12R{beta}1, lacking the transmembrane domain and termed {Delta}TM-IL-12R{beta}1, promotes dendritic cell migration to the draining lymph node, augments T cell activation and limits dissemination of M. tuberculosis (Mtb). We show here that CBA/J and C3H/HeJ mice (both highly susceptible to Mtb) express higher levels of {Delta}TM-IL-12R{beta}1 than resistant C57BL6 mice and limit early dissemination of Mtb from the lungs. Both CD11c+ cells and T cells express {Delta}TM-IL-12R{beta}1 in humans, and mice unable to make {Delta}TM-IL-12R{beta}1 in either CD4 or CD11c expressing cells permit early dissemination from the lung. Analysis of publically available blood transcriptomes indicates that pulmonary TB is associated with high {Delta}TM-IL-12R{beta}1 expression and that of all IL-12 related signals, the {Delta}TM-IL-12R{beta}1 signal best predicts active disease. {Delta}TM-IL-12R{beta}1 expression reflects the heterogeneity of latent TB infection and has the capacity to discriminate between latent and active disease. In a new Chinese TB patient cohort, {Delta}TM-IL-12R{beta}1 effectively differentiates TB from latent TB, healthy controls and pneumonia patients. Finally, {Delta}TM-IL-12R{beta}1 expression drops in drug-treated individuals in the UK and China where infection pressure is low. We propose that {Delta}TM-IL-12R{beta}1 regulates early dissemination from the lung and that it has diagnostic potential and provides mechanistic insights into human TB.

immunology

Structure and function of accessory Sec proteins involved in the adhesin export pathway of Streptococcus gordonii

Many pathogenic bacteria, including Streptococcus gordonii, possess a pathway for the export of a single serine-rich-repeat protein that mediates the adhesion of bacteria to host cells and the extracellular matrix. These adhesins are O-glycosylated by several cytosolic glycosyltransferases and require three accessory Sec proteins (Asp1-3) for export, but how the adhesins are processed for secretion is not well defined. Here, we show that O-glycosylation of S. gordonii adhesin GspB occurs in a sequential manner by three enzymes (GtfA/B, Nss, Gly) that attach N-acetylglucosamine and glucose to Ser/Thr residues. The modified substrate is subsequently transferred from the last glycosyltransferase to the Asp1/2/3 complex. Crystal structures show that both Asp1 and Asp3 are related to carbohydrate binding proteins. Asp1 also has an affinity for phospholipids, which is attenuated by Asp2. These results suggest a mechanism for the modification of adhesin in the cytosol and its subsequent targeting to the export machinery.

biochemistry