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R Jacoby

Publications and source records attributed to R Jacoby.

82 records · Page 5Linked to original sources

Mechanism of compartmentation of secretory proteins: transport of exocrine pancreatic proteins across the microsomal membrane.

The mechanism by which secretory proteins are segregated within the cisternal space of microsomal vesicles was studied using dog pancreas mRNA which directs the synthesis of 14 well-characterized nonglycosylated pancreatic exocrine proteins. In the absence of microsomal membranes, each of the proteins was synthesized as larger polypeptide chains (presecretory proteins). 1,000-2,000 daltons larger than their authentic counterparts as judged by polyacrylamide gel electrophoresis in SDS. Conditions optimal for the study of reconstituted rough microsomes in the reticulocyte lysate system were examined in detail using mRNA and microsomal membranes isolated from dog pancreas. Functional reconstitution of rough microsomes was considerably more efficient in the presence of micrococcal nuclease- treated membranes than in the presence of EDTA-treated membranes. Analysis for segregation of nascent secretory proteins by microsomal vesicles, using post-translational incubation in the presence of trypsin and chymotrypsin, 50 mug/ml each, was shown to be inadequate, because of the disruption of vesicles by protease activity. Addition of 1-3 mM tetracaine or 1 mM dibucaine stabilized microsomal membranes incubated in the presence of trypsin and chymotrypsin at either 0 degrees or 22 degrees C. Each of the pancreatic presecretory proteins studied was correctly processed to authentic secretory proteins by nuclease-treated microsomal membranes, as judged by both one-dimensional and two-dimensional gel electophoresis. Post-translational addition of membranes did not result in either segregation or processing of nascent polypeptide chains. Post- translational proteolysis, carried out in the presence of 3 mM tetracaine, indicated that each of the 14 characterized dog pancreas secretory proteins was quantitatively segregated by nuclease-treated microsomal vesicles. Segregation of nascent secretory proteins was irreversible, since radioactive amylase, as well as the other labeled secretory proteins, remained quantitatively sequestered in microsomal vesicles during a 90-min incubation at 22 degrees C after the cessation of protein synthesis. Studies employing synchronized protein synthesis and delayed addition of membranes indicated that all pancreatic presecretory proteins contain amino terminal peptide extensions. These peptide extensions are shown to mediate the cotranslational binding of presecretory proteins to microsomal membranes and the transport of nascent secretory proteins to the vesicular space. The maximum chain lengths which, during synthesis, allow segregation of nascent polypeptide chains varied between 61 (pretrypsinogen 2 + 3) and 88 (preprocarboxypeptidase A1) amino acid residues among dog pancreas presecretory proteins. Reconstitution studies using homologous and heterologous mixtures of mRNA (dog, guinea pig, and rat pancreas; rat liver) and micrococcal nuclease-treated microsomal membranes (dog, guinea pig, and rat liver; dog pancreas), in the presence of placental ribonuclease inhibitor, suggest that the translocation mechanism described is common to the rough endoplasmic reticulum of all mammalian tissues.

Animals↗

In pursuit of the "spatial gene": a family study.

Members of 192 families in the Tel Aviv area were given a battery of eight cognitive tests focusing on spatial measures but sampling verbal, numerical, and perceptual speed domains as well. The patterns of parent-child and sibling correlations gave very weak evidence, if any, for the operation of the X-linked recessive gene postulated by Stafford and others to affect performance on tasks involving spatial visualization. An analysis of male and female score distributions provided results more favorable to the X-linkage hypothesis, at least for the child generation, although suggesting that X linkage does not explain the whole male-female difference in performance on spatial tasks.

Adolescent↗

The value of measurement of ras oncogenes and nuclear DNA analysis in the diagnosis of Hürthle cell tumors of the thyroid.

Hürthle cell tumors (HCT) remain difficult to treat because some which appear non-malignant on light microscopy later metastasize. In order to improve diagnostic accuracy, the value of ras mutations and nuclear DNA analysis was determined in 65 patients with HCT. Rapid nuclear DNA cytometry (MicroTICAS system) was performed. Mutations of H-ras, K-ras, and N-ras genes were analyzed by oligonucleotide probe hybridizations to polymerase chain reaction (PCR) amplified DNA. HCT were classified by light microscopy as benign (n = 22), intermediate (n = 30), and malignant (n = 13). After a mean follow-up of 7 years, 1 (4.5%) of 22 benign tumors and 4 (13%) of 30 intermediate tumors had metastasized, leading to tumor death in 3 of these 5 patients. Six of the 13 cancers diagnosed by light microscopy also resulted in tumor-related deaths. Aneuploidy was found in 83% of all Hürthle cell cancers, including 3 (60%) of the 5 cancers not diagnosed microscopically. However, 49% of non-malignant HCT also demonstrated aneuploidy. A nuclear area of less than 55 square microns was found in 83% of all Hürthle cell cancers and in 100% of those cancers not diagnosed by light microscopy. However, 47% of non-malignant HCT also demonstrated a "small" nuclear area. Aneuploidy correctly identified 8 of 9 cancers that resulted in tumor death and each of 3 other tumors that developed metastases. However, 1 patient with a diploid tumor died of metastatic cancer. A nuclear area of less than 55 square microns identified each cancer that resulted in a tumor death.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗