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  • 1
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    The @journal of organic chemistry 48 (1983), S. 1780-1782 
    ISSN: 1520-6904
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    s.l. ; Stafa-Zurich, Switzerland
    Key engineering materials Vol. 274-276 (Oct. 2004), p. 35-42 
    ISSN: 1013-9826
    Source: Scientific.Net: Materials Science & Technology / Trans Tech Publications Archiv 1984-2008
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    New York, N.Y. : Wiley-Blackwell
    Journal of Cellular Biochemistry 59 (1995), S. 214-234 
    ISSN: 0730-2312
    Keywords: polysomes ; in vitro translation ; chain initiation ; synthesis pauses ; pro α chains ; Life and Medical Sciences ; Cell & Developmental Biology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Final assembly of the procollagen I heterotrimeric molecule is initiated by interactions between the carboxyl propeptide domains of completed, or nearly completed nascent pro α chains. These interactions register the chains for triple helix folding. Prior to these events, however, the appropriate nascent chains must be brought within the same compartments of the endoplasmic reticulum (ER). We hypothesize that the co-localization of the synthesis of the nascent pro α1(I) and pro α2(I) chains results from an interaction between their translational complexes during chain synthesis. This has been investigated by studying the polyribosomal loading of the pro α-chain messages during in vitro translation in the presence and absence of microsomal membranes, and in cells which have the ability to synthesize the pro α1 homotrimer or the normal heterotrimer. Recombinant human pro α1(I) and pro α2(I) CDNAs were inserted into plasmids and then transcribed in vitro. The resulting RNAs were translated separately and in mixture in a cell-free rabbit reticulocyte lysate ± canine pancreatic microsomes. Cycloheximide (100 μg/ml) was added and the polysomes were collected and fractionated on a 15-50% sucrose gradient. The RNA was extracted from each fraction and the level of each chain message was determined by RT-PCR. Polysomes from K16 (heterotrimer-producing), W8 (pro α1(I) homotrimer), and A2′ (heterotrimer + homotrimer) cells were similarly analyzed. Translations of the pro α1(I) and pro α2(I) messages proceeded independently in the cell-free, membrane-free systems, but were coordinately altered in the presence of membrane. The cell-free + membrane translation systems mimicked the behavior of the comparable cell polysome mRNA loading distributions. These data all suggest that there is an interaction between the pro α chain translational complexes at the ER membrane surface which temporally and spatially localize the nascent chains for efficient heteromeric selection and folding. © 1995 Wiley-Liss, Inc.
    Additional Material: 13 Ill.
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  • 4
    ISSN: 0730-2312
    Keywords: Life and Medical Sciences ; Cell & Developmental Biology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Early studies indicated that chain elongation pauses were prominent during the in vivo synthesis of type 1 procollagen chains, and it was postulated [Kirk et al., (1987): J Biol Chem 262:5540-5545.] that these might have a role in the coordination of procollagen 1 molecular assembly. To examine this postulate, polysomes isolated from [14C]-Pro-labeled 3T6 cells were subjected to SDS-PAGE. The resulting gels were Western blotted and screened with a monoclonal antibody (SP1.D8) directed against the N-terminal region of the pro α1(I) chain. The blots were fluorographed, which also permitted analysis of the pro α2(I) chain. There was a prominent pro α1 synthesis pause near the completion of full-length chain elongation, not matched by a pro α2 pause. The amount of labeled polysome-associated near-full length pro α1 chains increased in parallel with labeling time. After 24 h in culture -[14C-Pro], collagen synthesis ceased but unlabeled polysome-associated pro α1 chains were readily detected by SP1.D8. Change to fresh culture medium +[14C-Pro] reinitiated synthesis and permitted tracing of the newly synthesized labeled pro α chains through the polysome and intracellular compartments. The secreted procollagen molecules had a 2:1 pro α1(I):pro α2(I) chain ratio but the polysome-bound peptides did not. Pulse-chase experiments showed that near-full length pro α1(I) chains remained bound to polysomes as long as 4 h after reinitiation of translation but there was no evidence for pro α2(I) chain accumulation. The hydroxylation inhibitor α,α′-dipyridyl, and triple-helix inhibitors cis-hydroxyproline and 3,4 dehydroproline had minimal effects on the buildup of polysome-associated pro α1 chains. The glycosylation inhibitor tunicamycin also failed to change the final pro α1 chain pausing, but it did cause the appearance of several discrete lower molecular weight pro α1-related polypeptides that could not be accounted for simply as the result of lack of N-linked glycosylation in the C-propeptide regions. Disulfide bond experiments showed that some of the paused nascent polysome-associated pro α1(I) chains were disulfide bonded. Thus, while synthesis of pro α1(I) and pro α2(I) chains proceeds in parallel within the same ER compartments, their elongation rates are not coordinated. Interactions leading to heterotrimer formation are a late event which may affect the rate of release of the completed pro α1(I) chain from the polysome. The release of completed nascent pro α1(I) chains from their polysomal complexes is regulated by a mechanism not operating in the synthesis of pro α2(I) chains. The pro α1(I) chain release process is not connected directly with hydroxylation, glycosylation or triple-helix formation. © 1996 Wiley-Liss, Inc.
    Additional Material: 15 Ill.
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  • 5
    ISSN: 0730-2312
    Keywords: Hsp47 ; endoplasmic reticulum protein ; procollagen I ; pro α1 (l)-N-propeptide ; heat shock protein ; Life and Medical Sciences ; Cell & Developmental Biology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Hsp47, an endoplasmic reticulum-resident heat shock protein in fibroblasts has gelatin-binding properties. It had been hypothesized that it functions as a chaperone regulating procollagen chain folding and/or assembly, but the mechanism of the hsp47-procollagen I interaction was not clear. Hsp47 could bind to both denatured and native procollagen I. A series of competition studies were carried out in which various collagens and collagen domain peptides were incubated with35[S]-methionine-labeled murine 3T6 cell lysates prior to mixing with gelatin-Sepharose 4B beads. The gelatin-bound proteins were collected and analyzed by gel electrophoresis and autoradiography. Collagenase digested procollagen I had the same effect as denatured intact procollagen, indicating that the propeptides were the major interaction sites. The addition of intact pro α1 (l)-N-propeptide at 25 μg/ml compeletely inhibited hsp47 binding to the gelatin-Sepharose. Even the pentapeptide VPTDE, residues 86-90 of the pro α1 (l)-N-propeptide, inhibits hsp47-gelatin binding. These data implicating the pro α1 (l)-N-propeptide domain were confirmed by examination of polysome-associated pro α chains. The nascent pro α1(l)-chains with intact N-propeptide regions could be precipitated by monoclonal hsp47 antibody 11D10, but could not be precipitated by monoclonal anti-pro α1 (l)-N-propeptide antibody SP1.D8 unless dissociated from the hsp47. GST-fusion protein constructs of residues 23-108 (NP1), 23-151 (NP2), and 23-178 (NP3) within the pro α1 (l)-N-propeptide were coupled to Sepharose 4B and used as affinity beads for collection of hsp47 from 3T6 cell lysates. NP1 and NP2 both showed strong specific binding for lysate hsp47. Finally, the interaction was studied in membrane-free in vitro cotranslation systems in which the complete pro α1(l)- and pro α2(l)-chain RNAs were translated alone and in mixtures with each other and with hsp47 RNA. There was no interaction evident between pro α2(l)-chains and hsp47, whereas there was strong interaction between pro α1 (l)-chains and nascent hsp47. SP1.D8 could not precipitate pro α1 (l)-chains from the translation mix if nascent hsp47 was present. These data all suggest that if hsp47 has a “chaperone” role during procollagen chain processing and folding it performs this specific role via its preferential interaction with the proα1 (l) chain, and the pro α1 (l) amino-propeptide region in particular. © 1995 Wiley-Liss, Inc.
    Additional Material: 12 Ill.
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  • 6
    Publication Date: 2017-08-05
    Description: Nicotinamide adenine dinucleotide suppresses epileptogenesis at an early stage Scientific Reports, Published online: 4 August 2017; doi:10.1038/s41598-017-07343-0
    Electronic ISSN: 2045-2322
    Topics: Natural Sciences in General
    Published by Springer Nature
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  • 7
    Publication Date: 2017-04-25
    Description: MicroRNAs (miRs) are functionally important in spermatogenesis, which is the self-renewal or differentiation of spermatogonial stem cells (SSCs). Here, we report a novel role for miR-10b in regulating the self-renewal of mouse SSCs. We showed that miR-10b was highly expressed in mouse SSCs in vitro and enhanced SSC proliferation. Knockdown of miR-10b significantly increased the apoptosis of SSCs compared with controls. Kruppel-like factor 4 was found to be a target gene of miR-10b in the enhancement of SSC proliferation. These findings further our understanding of the self-renewal and differentiation of SSCs and provide a basis for the diagnosis, treatment, and prevention of male infertility.
    Print ISSN: 0263-6484
    Electronic ISSN: 1099-0844
    Topics: Biology , Medicine
    Published by Wiley
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  • 8
    Publication Date: 2012-08-09
    Description: The Journal of Physical Chemistry B DOI: 10.1021/jp302522b
    Electronic ISSN: 1520-5207
    Topics: Chemistry and Pharmacology , Physics
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  • 9
    Publication Date: 1999-12-01
    Print ISSN: 1001-0602
    Electronic ISSN: 1748-7838
    Topics: Biology , Medicine
    Published by Springer Nature
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  • 10
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