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981.
The dsz desulfurization gene cluster from Rhodococcus erythropolis strain KA2-5-1 was transferred into R. erythropolis strain MC1109, unable to desulfurize light gas oil (LGO), using a transposon-transposase complex. As a result, two recombinant strains, named MC0203 and MC0122, were isolated. Resting cells of strain MC0203 decreased the sulfur concentration of LGO from 120 mg l–1 to 70 mg l–1 in 2 h. The LGO-desulfurization activity of strain MC0203 was about twice that of strain MC0122 and KA2-5-1. The 10-methyl fatty acids of strain MC0203 were about 28%–41% that of strain MC1109. It is likely that strain MC0203 had a mutation involving alkylenation or methylation of 9-unsaturated fatty acids caused by the transposon inserted in the chromosome, which increased the fluidity of cell membranes and enhanced the desulfurization activity. 相似文献
982.
Kasuya K Takano T Tezuka Y Hsieh WC Mitomo H Doi Y 《International journal of biological macromolecules》2003,33(4-5):221-226
A DNA fragment carrying the gene encoding poly(3-hydroxybutyrate) (P(3HB)) depolymerase was cloned from the genomic DNA of Marinobacter sp. DNA sequencing analysis revealed that the Marinobacter sp. P(3HB) depolymerase gene is composed of 1734 bp and encodes 578 amino acids with a molecular mass of 61,757 Da. A sequence homology search showed that the deduced protein contains the signal peptide, catalytic domain (CD), cadherin-type linker domain (LD), and two substrate-binding domain (SBD). The fusion proteins of glutathione S-transferase (GST) with the CD showed the hydrolytic activity for denatured P(3HB) (dP(3HB)), P(3HB) emulsion (eP(3HB)) and p-nitrophenylbutyrate. On the other hand, the fusion proteins lacking the SBD showed much lower hydrolytic activity for dP(3HB) compared to the proteins containing both CD and SBD. In addition, binding tests revealed that the SBDs are specifically bound not to eP(3HB) but dP(3HB). These suggest that the SBDs play a crucial role in the enzymatic hydrolysis of dP(3HB) that is a solid substrate. 相似文献
983.
984.
A critical role of the 3' terminus of nascent DNA chains in recognition of stalled replication forks
Mizukoshi T Tanaka T Arai K Kohda D Masai H 《The Journal of biological chemistry》2003,278(43):42234-42239
Arrest of replication forks by various internal and external threats evokes a myriad of cellular reactions, collectively known as DNA replication checkpoint responses. In bacteria, PriA is essential for restoration of stalled replication forks and recombinational repair of double-stranded DNA breaks and is a candidate sensor protein that may recognize arrested forks. Here, we report that PriA protein specifically recognizes 3' termini of arrested nascent DNA chains at model stalled replication forks in vitro. Mutations in the putative "3' terminus binding pocket" present in the N-terminal segment of PriA result in reduced binding to stalled replication fork structures and loss of its biological functions. The results suggest a mechanism by which stalled replication forks are recognized by a sensor protein for checkpoint responses. 相似文献
985.
986.
Protein-tyrosine phosphatase 1B as new activator for hepatic lipogenesis via sterol regulatory element-binding protein-1 gene expression 总被引:7,自引:0,他引:7
Shimizu S Ugi S Maegawa H Egawa K Nishio Y Yoshizaki T Shi K Nagai Y Morino K Nemoto K Nakamura T Bryer-Ash M Kashiwagi A 《The Journal of biological chemistry》2003,278(44):43095-43101
987.
The mammalian target of rapamycin (mTOR) partner,raptor, binds the mTOR substrates p70 S6 kinase and 4E-BP1 through their TOR signaling (TOS) motif 总被引:12,自引:0,他引:12
Nojima H Tokunaga C Eguchi S Oshiro N Hidayat S Yoshino K Hara K Tanaka N Avruch J Yonezawa K 《The Journal of biological chemistry》2003,278(18):15461-15464
The mammalian target of rapamycin (mTOR) controls multiple cellular functions in response to amino acids and growth factors, in part by regulating the phosphorylation of p70 S6 kinase (p70S6k) and eukaryotic initiation factor 4E-binding protein 1 (4E-BP1). Raptor (regulatory associated protein of mTOR) is a recently identified mTOR binding partner that also binds p70S6k and 4E-BP1 and is essential for TOR signaling in vivo. Herein we demonstrate that raptor binds to p70S6k and 4E-BP1 through their respective TOS (conserved TOR signaling) motifs to be required for amino acid- and mTOR-dependent regulation of these mTOR substrates in vivo. A point mutation of the TOS motif also eliminates all in vitro mTOR-catalyzed 4E-BP1 phosphorylation and abolishes the raptor-dependent component of mTOR-catalyzed p70S6k phosphorylation in vitro. Raptor appears to serve as an mTOR scaffold protein, the binding of which to the TOS motif of mTOR substrates is necessary for effective mTOR-catalyzed phosphorylation in vivo and perhaps for conferring their sensitivity to rapamycin and amino acid sufficiency. 相似文献
988.
Furuta B Harada A Kobayashi Y Takeuchi K Kobayashi T Umeda M 《Journal of neurochemistry》2002,82(5):1018-1028
Nadrin is a GTPase-activating protein (GAP) for the rho family of GTPases that controls Ca2+-dependent exocytosis in nerve endings. In this study, three novel splice variants of nadrin were identified and the variants were designated as nadrin-102, -104, -116 and -126 according to their relative molecular masses. All nadrin variants share the GAP domain, coiled-coil domain, serine/threonine/proline-rich domain, SH3-binding motif, and a successive repeat of 29 glutamines. Tissue distribution analyses using polyclonal antibodies that can discriminate each variant showed that the expression of nadrin-102, -104 and -116 was dominant in neuronal tissues and correlates well with the differentiation of neurons while nadrin-126 was strongly expressed in embryonic brain. Expression of nadrin-116 in PC12 cells strongly inhibited NGF-dependent neurite outgrowth and this effect was dependent on its GAP activity. In contrast, no significant effect on either cell morphology or neurite outgrowth was observed with other variants. All variants showed punctate appearance throughout the cytoplasm, while the 66-kDa carboxyl-terminal fragment of nadrin-102 and/or nadrin-116 was localized to the nucleus and its nuclear translocation was accelerated by NGF-induced differentiation of the cells. These results suggested that nadrin variants are different in their ability to regulate rho-mediated signaling and that, in addition to being a GTPase-activating protein, nadrin-102 and -116 have other distinct functions in the nucleus of the cell, implying a possible role in the cross-talk between the cytoskeleton and the nucleus. 相似文献
989.
Hayashidani H Kanzaki N Kaneko Y Okatani AT Taniguchi T Kaneko K Ogawa M 《Journal of wildlife diseases》2002,38(1):202-205
From December 1994 to February 1995, 131 wild boars (Sus scrofa leucomysta) living in a mountainous area in Japan were examined for yersiniosis and listeriosis. Of 131 wild boars, 76 (58%) were males and 55 (42%) were females. Four Yersinia spp. including Y. pseudotuberculosis, Y. enterocolitica, Y. frederiksenii, and Y. aldovei, were isolated from 49 (37%) of 131 wild boars. Yersinia pseudotuberculosis was isolated from five (4%) of 131 wild boars. All Y. pseudotuberculosis isolates were serotype 4b and harbored virulence plasmids. Yersinia pseudotuberculosis was isolated only from boars under 2-yr-old. No human pathogenic Y. enterocolitica was isolated. Listeria monocytogenes was isolated from two (1%) of the wild boars and both isolates were serotype 4b. These findings indicated that wild boar could be a reservoir of Y. pseudotuberculosis and L. monocytogenes in Japan. 相似文献
990.
Autoinhibitory regulation of p73 by Delta Np73 to modulate cell survival and death through a p73-specific target element within the Delta Np73 promoter 总被引:4,自引:0,他引:4 下载免费PDF全文
Nakagawa T Takahashi M Ozaki T Watanabe Ki K Todo S Mizuguchi H Hayakawa T Nakagawara A 《Molecular and cellular biology》2002,22(8):2575-2585