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281.
Summary In Schizophyllum commune, adenineless mutations conferring pink color fell into two loosely linked loci, ad-4 and ad-7. The mutations were tested for dominance and complementation in dikaryons, and several of the ad-7 mutations were found to be partly dominant over their wild allele and noncomplementary with mutations of the ad-4 locus. The dominance and at least one case of intergenic noncomplementation were verified by quantitative tests.This research was partly supported by the U.S. Department of Agriculture Grant No. A10-CR-66. 相似文献
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Kucejova B Peña-Llopis S Yamasaki T Sivanand S Tran TA Alexander S Wolff NC Lotan Y Xie XJ Kabbani W Kapur P Brugarolas J 《Molecular cancer research : MCR》2011,9(9):1255-1265
mTOR complex 1 (mTORC1) is implicated in cell growth control and is extensively regulated. We previously reported that in response to hypoxia, mTORC1 is inhibited by the protein regulated in development and DNA damage response 1 (REDD1). REDD1 is upregulated by hypoxia-inducible factor (HIF)-1, and forced REDD1 expression is sufficient to inhibit mTORC1. REDD1-induced mTORC1 inhibition is dependent on a protein complex formed by the tuberous sclerosis complex (TSC)1 and 2 (TSC2) proteins. In clear-cell renal cell carcinoma (ccRCC), the von Hippel-Lindau (VHL) gene is frequently inactivated leading to constitutive activation of HIF-2 and/or HIF-1, which may be expected to upregulate REDD1 and inhibit mTORC1. However, mTORC1 is frequently activated in ccRCC, and mTORC1 inhibitors are effective against this tumor type; a paradox herein examined. REDD1 was upregulated in VHL-deficient ccRCC by in silico microarray analyses, as well as by quantitative real-time PCR, Western blot, and immunohistochemistry. Vhl disruption in a mouse model was sufficient to induce Redd1. Using ccRCC-derived cell lines, we show that REDD1 upregulation in tumors is VHL dependent and that both HIF-1 and HIF-2 are, in a cell-type-dependent manner, recruited to, and essential for, REDD1 induction. Interestingly, whereas mTORC1 is responsive to REDD1 in some tumors, strategies have evolved in others, such as mutations disrupting TSC1, to subvert mTORC1 inhibition by REDD1. Sequencing analyses of 77 ccRCCs for mutations in TSC1, TSC2, and REDD1, using PTEN as a reference, implicate the TSC1 gene, and possibly REDD1, as tumor suppressors in sporadic ccRCC. Understanding how ccRCCs become refractory to REDD1-induced mTORC1 inhibition should shed light into the development of ccRCC and may aid in patient selection for molecular-targeted therapies. 相似文献
284.
Dehring DA Clarke F Ricart BG Huang Y Gomez TS Williamson EK Hammer DA Billadeau DD Argon Y Burkhardt JK 《Journal of immunology (Baltimore, Md. : 1950)》2011,186(8):4805-4818
Dendritic cells (DCs) are professional APCs that reside in peripheral tissues and survey the body for pathogens. Upon activation by inflammatory signals, DCs undergo a maturation process and migrate to lymphoid organs, where they present pathogen-derived Ags to T cells. DC migration depends on tight regulation of the actin cytoskeleton to permit rapid adaptation to environmental cues. We investigated the role of hematopoietic lineage cell-specific protein 1 (HS1), the hematopoietic homolog of cortactin, in regulating the actin cytoskeleton of murine DCs. HS1 localized to lamellipodial protrusions and podosomes, actin-rich structures associated with adhesion and migration. DCs from HS1(-/-) mice showed aberrant lamellipodial dynamics. Moreover, although these cells formed recognizable podosomes, their podosome arrays were loosely packed and improperly localized within the cell. HS1 interacts with Wiskott-Aldrich syndrome protein (WASp), another key actin-regulatory protein, through mutual binding to WASp-interacting protein. Comparative analysis of DCs deficient for HS1, WASp or both proteins revealed unique roles for these proteins in regulating podosomes with WASp being essential for podosome formation and with HS1 ensuring efficient array organization. WASp recruitment to podosome cores was independent of HS1, whereas HS1 recruitment required Src homology 3 domain-dependent interactions with the WASp/WASp-interacting protein heterodimer. In migration assays, the phenotypes of HS1- and WASp-deficient DCs were related, but distinct. WASp(-/y) DCs migrating in a chemokine gradient showed a large decrease in velocity and diminished directional persistence. In contrast, HS1(-/-) DCs migrated faster than wild-type cells, but directional persistence was significantly reduced. These studies show that HS1 functions in concert with WASp to fine-tune DC cytoarchitecture and direct cell migration. 相似文献
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Irit Granot Yair Aharonowitz Amihay Freeman 《Applied microbiology and biotechnology》1988,27(5-6):457-463
Summary The effect of water miscible solvents on 1-steroid reduction by free and polyacrylamide-hydrazide (PAAH) entrapped Mycobacterium sp. NRRL B-3805 cells was investigated. On the basis of retention of reductase activity an order of preference of diols (e.g. ethyleneglycol) > DMSO > DMF and monoalcohols (e.g. ethanol) as cosolvents was recorded. Significant increase in substrate (1,4-androstadiene-3,17-dione) solubility was attained in presence of the cosolvent of choice (ethyleneglycol), accompanied by some inhibition of the 1-reductase activity. Optimization of ethyleneglycol concentration (10–20% (v/v)) led to specific activity in a homogeneous medium, higher than recorded in the absence of cosolvent. Immobilization in PAAH gel resulted in high retention of immobilized enzymic activity, accompanied by minor diffusional limitations. Moreover, the gel exhibited protective effect of the entrapped cells from cosolvent inhibition. Modification of gel composition (e. g. hydrophobicity) had no significant effect on reaction kinetics. 相似文献
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l-Alanine dehydrogenase was found in extracts of the antibiotic producer Streptomyces clavuligerus. The enzyme was induced by ammonia, and the level of induction was dependend on the extracellular concentration. l-Alanine was the only amino acid able to induce alanine dehydrogenase. The enzyme was characterized from a 38-fold purified preparation. Pyruvate (K
m
=1.1 mM), ammonia (K
m
=20 mM) and NADH (K
m
=0.14 mM) were required for the reductive amination, and l-alanine (K
m
=9.1 mM) and NAD (K
m
=0.5 mM) for the oxidative deaminating reaction. The aminating reaction was inhibited by alanine, serine and NADPH. Alanine inhibited uncompetitively with respect to NADH (K
i
=1.6 mM) and noncompetitively with respect to ammonia (K
i
=2.0 mM) and pyruvate (K
i
=3.0 mM). In the aminating reaction 3-hydroxypyruvate, glyoxylate and 2-oxobutyrate could partially (6–7%) substitute pyruvate. Alanine dehydrogenase from S. clavuligerus differed with respect to its molecular weight (92000) and its kinetic properties from those described for other microorganisms.Abbreviation Alanine-DH
l-alanine:NAD oxidoreductase 相似文献