secretory glycoproteins
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2019 ◽  
Vol 63 (10) ◽  
pp. 401-406 ◽  
Author(s):  
Takasuke Fukuhara ◽  
Yoshiharu Matsuura


2019 ◽  
Author(s):  
Emmanuel Nji ◽  
Ashutosh Gulati ◽  
Abdul Aziz Qureshi ◽  
Mathieu Coincon ◽  
David Drew

AbstractThe decoration of secretory glycoproteins and glycolipids with sialic acid is critical to many physiological and pathological processes. Sialyation is dependent on a continuous supply of sialic acid into Golgi organelles in the form of CMP-sialic acid. Translocation of CMP-sialic acid into Golgi is carried out by the CMP-sialic acid transporter (CST). Mutations in human CST are linked to glycosylation disorders, and CST is important for glycopathway engineering, as it is critical for sialyation efficiency of therapeutic glycoproteins. The mechanism of how CMP-sialic acid is recognized and translocated across Golgi membranes in exchange for CMP is poorly understood. Here we have determined the crystal structure of a eukaryotic CMP-sialic acid transporter in complex with CMP. We conclude that the specificity of CST for CMP-sialic acid is established by the nucleotide CMP to such an extent, they are uniquely able to work both as passive and as (secondary) active antiporters.





PLoS ONE ◽  
2011 ◽  
Vol 6 (5) ◽  
pp. e19979 ◽  
Author(s):  
Daniela Cioaca ◽  
Simona Ghenea ◽  
Laurentiu N. Spiridon ◽  
Marioara Marin ◽  
Andrei-Jose Petrescu ◽  
...  


2008 ◽  
Vol 232 (3) ◽  
pp. 718-725 ◽  
Author(s):  
Eckart Grabenhorst ◽  
Andrea Hoffman ◽  
Manfred Nimtz ◽  
Gerd Zettlmeissl ◽  
Harald S. Conradt


2008 ◽  
Vol 180 (1) ◽  
pp. 129-143 ◽  
Author(s):  
Hisao Nagaya ◽  
Taku Tamura ◽  
Arisa Higa-Nishiyama ◽  
Koji Ohashi ◽  
Mayumi Takeuchi ◽  
...  

The quality of cargo proteins in the endoplasmic reticulum (ER) is affected by their motion during folding. To understand how the diffusion of secretory cargo proteins is regulated in the ER, we directly analyze the motion of a single cargo molecule using fluorescence imaging/fluctuation analyses. We find that the addition of two N-glycans onto the cargo dramatically alters their diffusion by transient binding to membrane components that are confined by hyperosmolarity. Via simultaneous observation of a single cargo and ER exit sites (ERESs), we could exclude ERESs as the binding sites. Remarkably, actin cytoskeleton was required for the transient binding. These results provide a molecular basis for hypertonicity-induced immobilization of cargo, which is dependent on glycosylation at multiple sites but not the completion of proper folding. We propose that diffusion of secretory glycoproteins in the ER lumen is controlled from the cytoplasm to reduce the chances of aggregation.



2007 ◽  
Vol 39 (3) ◽  
pp. 189-198 ◽  
Author(s):  
Tristan M Lovell ◽  
Russell J Woods ◽  
David J Butlin ◽  
Kerensa J Brayley ◽  
Isaac T Manyonda ◽  
...  

Placental neurokinin B appears to be post-translationally modified by phosphocholine (PC) attached to the aspartyl side chain at residue 4 of the mature peptide. Corticotrophin releasing factor (CRF) was found to be expressed by the rat placenta with the main secreted forms being phosphocholinated proCRF+/− one or two polysaccharide moieties. A combination of high-pressure liquid chromatography (HPLC) and two-site immunometric analysis suggested that PC was also attached to the placental precursors of adrenocorticotrophin, hemokinin, activin and follistatin. However, the fully processed forms of rat placental activin and CRF were free of PC. Formerly, the parasitic filarial nematodes have used PC as a post-translational modification, attached via the polysaccharide moiety of certain secretory glycoproteins to attenuate the host immune system allowing parasite survival, but it is the PC group itself which endows the carrier with the biological activity. The fact that treatment of proCRF peptides with phospholipase C but not endoglycosidase destroyed PC immunoreactivity suggested a simpler mode of attachment of PC to placental peptides than that used by nematodes. Thus, it is possible that by analogy the placenta uses its secreted phosphocholinated hormones to modulate the mother’s immune system and help protect the placenta from rejection.



2007 ◽  
Vol 73 (14) ◽  
pp. 4446-4454 ◽  
Author(s):  
Yunkyoung Song ◽  
Min Hee Choi ◽  
Jeong-Nam Park ◽  
Moo Woong Kim ◽  
Eun Jung Kim ◽  
...  

ABSTRACT In an attempt to engineer a Yarrowia lipolytica strain to produce glycoproteins lacking the outer-chain mannose residues of N-linked oligosaccharides, we investigated the functions of the OCH1 gene encoding a putative α-1,6-mannosyltransferase in Y. lipolytica. The complementation of the Saccharomyces cerevisiae och1 mutation by the expression of YlOCH1 and the lack of in vitro α-1,6-mannosyltransferase activity in the Yloch1 null mutant indicated that YlOCH1 is a functional ortholog of S. cerevisiae OCH1. The oligosaccharides assembled on two secretory glycoproteins, the Trichoderma reesei endoglucanase I and the endogenous Y. lipolytica lipase, from the Yloch1 null mutant contained a single predominant species, the core oligosaccharide Man8GlcNAc2, whereas those from the wild-type strain consisted of oligosaccharides with heterogeneous sizes, Man8GlcNAc2 to Man12GlcNAc2. Digestion with α-1,2- and α-1,6-mannosidase of the oligosaccharides from the wild-type and Yloch1 mutant strains strongly supported the possibility that the Yloch1 mutant strain has a defect in adding the first α-1,6-linked mannose to the core oligosaccharide. Taken together, these results indicate that YlOCH1 plays a key role in the outer-chain mannosylation of N-linked oligosaccharides in Y. lipolytica. Therefore, the Yloch1 mutant strain can be used as a host to produce glycoproteins lacking the outer-chain mannoses and further developed for the production of therapeutic glycoproteins containing human-compatible oligosaccharides.



2002 ◽  
Vol 122 (2) ◽  
pp. 149-160 ◽  
Author(s):  
Fernanda Romaris ◽  
Simon J. North ◽  
Lucille F. Gagliardo ◽  
Barbara A. Butcher ◽  
Kaya Ghosh ◽  
...  


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