Search PubMedSearch

Biomedical subjects

J Grünberg

Publications and source records attributed to J Grünberg.

At least 19 recordsLinked to original sources

Human lactase-phlorizin hydrolase: evidence of dimerization in the endoplasmic reticulum.

Human lactase-phlorizin hydrolase [EC 3.2.1.23-3.2.1.62] is a disaccharidase located in the microvillus membrane of small intestinal epithelial cells. The enzyme is synthesized as a precursor protein in the endoplasmic reticulum and in addition to being glycosylated is subsequently proteolytically processed to the mature microvillus membrane-bound form after passing the trans-Golgi compartment. We studied the oligomerization of human lactase-phlorizin hydrolase in transfected polarized Madin Darby canine kidney cells using metabolic labeling and sucrose-density centrifugation analysis. We detected high mannose dimers of the lactase-phlorizin hydrolase precursor molecule after metabolic labeling with [35S]methionine at 37 and 15 degrees C. In addition, both complex-glycosylated lactase-phlorizin hydrolase precursor molecule and the mature microvillus membrane-bound enzyme showed this oligomeric structure. Chemical crosslinking resulted in the detection of covalently crosslinked lactase-phlorizin hydrolase dimers after sodium dodecyl sulfate polyacrylamide gel electrophoresis. These results provide evidence that oligomerization of lactase-phlorizin hydrolase is an early event and begins in the endoplasmic reticulum.

Animals

Cloning of the PABA peptide hydrolase alpha subunit (PPH alpha) from human small intestine and its expression in COS-1 cells.

PABA peptide hydrolase (PPH) from human enterocytes is comprised of two subunits, alpha and beta. PPH alpha is over 70% identical to meprin, a protease isolated from mouse and rat kidney. The enzyme shows a modular organization in that it contains an astacin protease domain, an adhesive domain, an EGF-like domain, an a putative C-terminal membrane spanning domain. Expression of a chimeric meprin-PPH alpha cDNA in COS-1 cells led to the synthesis of immature, transport-incompetent homodimers. In addition, complex glycosylated forms were detected in the culture medium, suggesting that the enzyme is secreted after proteolytic removal of the membrane anchor.

Amino Acid Sequence

Expression of the alpha subunit of PABA peptide hydrolase (EC 3.4.24.18) in MDCK cells. Synthesis and secretion of an enzymatically inactive homodimer.

In this paper, we report the expression of PPH alpha in the polarized cell line MDCK (Madin Darby canine kidney). In these cells, the enzyme was synthesized in an inactive proform, which upon treatment with trypsin was activated. The enzyme isolated from cell extracts was core-glycosylated and appeared to be retained in the ER as a homodimer. No PPH alpha was detectable on the surface of intact cells by immunofluorescence. However, a complex glycosylated soluble but inactive form was present in the culture medium, suggesting that proteolytic removal of the C-terminal membrane anchoring peptide leads to the secretion of PPH alpha.

Amino Acid Sequence

Proteolytic processing of human intestinal lactase-phlorizin hydrolase precursor is not a prerequisite for correct sorting in Madin Darby canine kidney (MDCK) cells.

Maturation of lactase-phlorizin hydrolase (LPH) (EC 3.2.1.23-62) requires proteolytic processing of precursor (pro-LPH) to mature microvillus membrane enzyme (m-LPH). Subcellular site and function of this processing are unknown. We studied the processing and sorting of human LPH expressed permanently in MDCK cells. LPH was inserted into the apical membrane and small amounts were found basolateral. Of the LPH immunoprecipitated from the apical membrane, 42% was in the mature, i.e. proteoytically processed form; on the basolateral membrane it was 20%. Thus, LPH-processing occurs after sorting and is not necessary for surface expression.

Animals

Formation of heterotrimers between the membrane-integrated and the soluble glycoproteins of vesicular stomatitis virus leads to their intracellular cotransport.

BHK cells infected with vesicular stomatitis virus serotype Indiana generate intracellularly two different types of glycoproteins: the authentic membrane-integrated G protein of virions and a smaller soluble Gs protein lacking the transmembrane and cytoplasmic domains which is secreted into the growth medium. A Gs1 protein species which is formed during or shortly after translation in the endoplasmic reticulum lumen is modified in the same way as the G1 protein by endoglycosidase H-sensitive oligosaccharides of the high-mannose type. Both G1 and Gs1 are almost simultaneously transported, trimmed, and processed into G2 and Gs2 species which possess carbohydrate side chains of the complex type, making both glycoproteins resistant to endoglycosidase H cleavage. Secretion of Gs2 protein into the growth medium and arrival of G2 protein on the cell surface occur concomitantly. Membrane-integrated G protein and the soluble Gs protein molecules oligomerize intracellularly into heterotrimers which can be immunoprecipitated after chemical cross-linking. Gs protein seems to contain sufficient structural information for the formation of heterotrimers which are efficiently transported to the cell surface. Heterotrimer formation between G and Gs proteins explains the rapid secretion of Gs molecules.

Clone Cells

Intracellular formation of two soluble glycoproteins in BHK cells infected with vesicular stomatitis virus serotype New Jersey.

Infection of BHK 21 cells with VSV serotype New Jersey gave rise to three intracellular viral glycoproteins: the membrane-integrated G protein and the two soluble glycoproteins Gs and Gss which lacked the cytoplasmic and transmembrane domains as was deduced from limited chemical cleavage of the glycoproteins by hydroxylamine. Both soluble glycoproteins were completely protected by the microsomal membrane against proteolytic digestion. The soluble glycoproteins were formed in the endoplasmic reticulum because both were fully endo H sensitive after a 5-min pulse with [35S]methionine. Protease inhibitors and lysosomorphic agents had no effect on the yield of Gs and Gss. Tunicamycin treatment of VSV-infected cells reduced extensively viral particle maturation without affecting significantly the release of Gs and Gss. Two other glycosylation inhibitors, swainsonine and deoxynojirimycin did not decrease virus particle formation and secretion of both soluble glycoproteins. Since the glycosylation inhibitors showed a differential effect on the processing and transport of the glycoproteins a precursor-product relationship between G protein and soluble glycoproteins is highly unlikely. Both soluble glycoproteins were also synthesized in vitro in a reticulocyte lysate without microsomal membranes when primed with RNA extracted from VSV-infected cells or with newly transcribed mRNA from nucleocapsids in a coupled transcription system. Thus, proteases localized in the lumen of the ER seemed to be not essential for the generation of both soluble glycoproteins.

Animals

[New challenges for the general pediatrician: high technology applied to the patients].

New technologies are concentrated and managed in large urban centers at highly developed hospitals. These technologies reach primary health care (HC) level through a "sui generis" intra-national transfer of technology: incorporated to patients. Patients with continuous ambulatory peritoneal dialysis (CAPD) are emblematic of this model of technological transfer. One patient with CAPD is taken as case study for analysis and discussion about problems in HC primary level. The lack of an adequate and efficient primary health care develops a quasi vital dependence on distant hospitals. As a consequence, primary pediatricians are limited to routine and bureaucratic activities to comply with tertiary level staff prescriptions. The outcome is negatif both for patients and health professionals i.e. strict dependence with HC tertiary level, high amount of unnecessary hospitalizations, severe interference with patients and their family social life, frustration, fear, insecurity and potential progressive difficulties in the access to health care. Real participation of all levels of HC staff constitute a sine que non necessity for the attaining of patients rehabilitation through family-centered, community-based care and for equity in the access to HC facilities. The reaching of these goals requires primary pediatricians to become involved in a program of continuous training education on new technologies tailored to their needs, possibilities and wishes if a comprehensive coordination between primary and tertiary health care levels is to be expected.

Humans