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Mnl2, a novel component of the ER associated protein degradation pathway
Authors:Martinez Benitez Elena  Stolz Alexandra  Becher Alexander  Wolf Dieter H
Affiliation:Institut für Biochemie der Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart, Germany
Abstract:
In eukaryotes, membrane and soluble proteins of the secretory pathway enter the endoplasmic reticulum (ER) after synthesis in an unfolded state. Directly after entry, most proteins are modified with glycans at suitable glycosylation sites and start to fold. A protein that cannot fold properly will be degraded in a process called ER associated degradation (ERAD). Failures in ERAD, either by loss of function or by premature degradation of proteins, are a cause of severe diseases. Therefore, the search for novel ERAD components to gain better insight in this process is of high importance. Carbohydrate trimming is a relevant process in ER quality control. In this work a novel putative yeast mannosidase encoded by the open reading frame YLR057W was identified and named Mnl2. Deletion of MNL2 diminished the degradation efficiency of misfolded CPY* in the absence of the cognate mannosidase Mnl1, indicating a specific role in ERAD.
Keywords:Abbreviations: AAA, ATPase associated with a variety of cellular activities   CM, complete minimal medium   CPY, carpoxipeptidase Y   EDEM, ER degradation enhancing α-mannosidase-like protein   ER, endoplasmic reticulum   ERAD, ER associated degradation   PCR, polymerase chain reaction   PGK, 3-phospholglcerate kinase   SDS&ndash  PAGE, sodium dodecyl sulfate polyacrylamide gel electrophoresis
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