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11.
目前几乎所有有机化学品和塑料是从原油和天然气中生产的, 而生物技术的应用使得利用可再生资源进行大规模化工生产成为可能。以下主要综述了白色生物技术, 即利用细菌、酵母或酶将可发酵糖转化为特定的化学产品的技术。白色生物技术极大节省了不可再生能源的消耗, 减少了温室气体的排放。在有利条件下, 如果化工生产中相关技术有了发展并且可以成功以木质纤维素为原料, 那么到2050年不可再生能源的消耗将减少将近2/3 (67%)。欧洲(EU-25)地区的分析表明, 白色生物技术相关的用地在未来几年的欧洲不会受到制约, 尤其是有大量闲置资源的东欧。另外, 虽然原则上可以在白色生物技术中使用自然的细菌和酶, 但是很多专家认为, 利用经遗传改造生物体(GMO)可以达到高产量、高浓度、高效率, 这对实现经济活力是必要的。值得注意的是, 目前并不是所有的重组基因和其他物种间的相互作用所带来的后果都可预见, 因此化工生产释放的GMOs的安全失活和处理非常重要, 但是如果采取足够的预防措施, 在白色生物技术中应用GMOs的风险是可以控制的。我们认为, 生物生产过程的技术突破、下游生产过程的控制、化石燃料的高价格、可发酵糖的低价获得是生物质化学产业发展中的关键因素, 这4个因素及其他伴随策略是发展整体白色生物技术的要求。 相似文献
12.
Jain RK; Piskorz CF; Huang BG; Locke RD; Han HL; Koenig A; Varki A; Matta KL 《Glycobiology》1998,8(7):707-717
The selectins interact in important normal and pathological situations with
certain sialylated, fucosylated glycoconjugate ligands containing sialyl
Lewisx(Neu5Acalpha2-3Galbeta1-4(Fucalpha1-3)GlcN Ac). Much effort has gone
into the synthesis of sialylated and sulfated Lewisxanalogs as competitive
ligands for the selectins. Since the natural selectin ligands GlyCAM-1 and
PSGL-1 carry sialyl Lewisxas part of a branched Core 2 O-linked structure,
we recently synthesized Galbeta1-4(Fucalpha1-3)GlcNAcbeta1-6(SE-3Galbeta1++
+-3)GalNAc1alphaOMe and found it to be a moderately superior ligand for L
and P-selectin (Koenig et al. , Glycobiology 7, 79-93, 1997). Other studies
have shown that sulfate esters can replace sialic acid in some selectin
ligands (Yeun et al. , Biochemistry, 31, 9126-9131, 1992; Imai et al. ,
Nature, 361, 555, 1993). Based upon these observations, we hypothesized
that Neu5Acalpha2-3Galbeta1-3GalNAc might have the capability of
interacting with L- and P-selectin. To examine this hypothesis, we
synthesized Galbeta1-4(Fucalpha1-3)GlcNAcbeta1-6(Neu5Acalpha2++
+-3Galbeta1-3)- GalNAc alpha1-OB, which was found to be 2- to 3-fold better
than sialyl Lexfor P and L selectin, respectively. We also report the
synthesis of an unusual structure GalNAcbeta1-4(Fucalpha1-
3)GlcNAcbeta1-OMe (GalNAc- Lewisx-O-methyl glycoside), which also proved to
be a better inhibitor of L- and P-selectin than sialyl Lewisx-OMe.
Combining this with our knowledge of Core 2 branched structures, we have
synthesized a molecule that is 5- to 6-fold better at inhibiting L- and
P-selectin than sialyl Lewisx-OMe, By contrast to unbranched structures,
substitution of a sulfate ester group for a sialic acid residue in such a
molecule resulted in a considerable loss of inhibition ability. Thus, the
combination of a sialic acid residue on the primary (beta1-3) arm, and a
modified Lexunit on the branched (beta1-6) arm on an O-linked Core 2
structure generated a monovalent synthetic oliogosaccharide inhibitor
superior to SLexfor both L- and P-selectin.
相似文献
13.
Steven E Reid Emily J Kay Lisa J Neilson Anne‐Theres Henze Jens Serneels Ewan J McGhee Sandeep Dhayade Colin Nixon John BG Mackey Alice Santi Karthic Swaminathan Dimitris Athineos Vasileios Papalazarou Francesca Patella Álvaro Román‐Fernández Yasmin ElMaghloob Juan Ramon Hernandez‐Fernaud Ralf H Adams Shehab Ismail David M Bryant Manuel Salmeron‐Sanchez Laura M Machesky Leo M Carlin Karen Blyth Massimiliano Mazzone Sara Zanivan 《The EMBO journal》2017,36(16):2373-2389
Tumor progression alters the composition and physical properties of the extracellular matrix. Particularly, increased matrix stiffness has profound effects on tumor growth and metastasis. While endothelial cells are key players in cancer progression, the influence of tumor stiffness on the endothelium and the impact on metastasis is unknown. Through quantitative mass spectrometry, we find that the matricellular protein CCN1/CYR61 is highly regulated by stiffness in endothelial cells. We show that stiffness‐induced CCN1 activates β‐catenin nuclear translocation and signaling and that this contributes to upregulate N‐cadherin levels on the surface of the endothelium, in vitro. This facilitates N‐cadherin‐dependent cancer cell–endothelium interaction. Using intravital imaging, we show that knockout of Ccn1 in endothelial cells inhibits melanoma cancer cell binding to the blood vessels, a critical step in cancer cell transit through the vasculature to metastasize. Targeting stiffness‐induced changes in the vasculature, such as CCN1, is therefore a potential yet unappreciated mechanism to impair metastasis. 相似文献
14.
Tyler C. Moyer Kevin M. Clutario Bramwell G. Lambrus Vikas Daggubati Andrew J. Holland 《The Journal of cell biology》2015,209(6):863-878
Centriole duplication occurs once per cell cycle in order to maintain control of centrosome number and ensure genome integrity. Polo-like kinase 4 (Plk4) is a master regulator of centriole biogenesis, but how its activity is regulated to control centriole assembly is unclear. Here we used gene editing in human cells to create a chemical genetic system in which endogenous Plk4 can be specifically inhibited using a cell-permeable ATP analogue. Using this system, we demonstrate that STIL localization to the centriole requires continued Plk4 activity. Most importantly, we show that direct binding of STIL activates Plk4 by promoting self-phosphorylation of the activation loop of the kinase. Plk4 subsequently phosphorylates STIL to promote centriole assembly in two steps. First, Plk4 activity promotes the recruitment of STIL to the centriole. Second, Plk4 primes the direct binding of STIL to the C terminus of SAS6. Our findings uncover a molecular basis for the timing of Plk4 activation through the cell cycle–regulated accumulation of STIL. 相似文献
15.
The cellobiose catabolic system of Escherichia coli K12 is being used to
study the role of cryptic genes in evolution of new functions. Escherichia
coli does not use beta-glucoside sugars; however, mutations in several loci
can activate the cryptic bgl operon and permit growth on the beta-glucoside
sugars arbutin and salicin. Such Bgl+ mutants do not use cellobiose, which
is the most common beta-glucoside in nature. We have isolated a Cel+
(cellobiose-utilizing) mutant from a Bgl+ mutant of E. coli K12. The Cel+
mutant grows well on cellobiose, arbutin, and salicin. Genes for
utilization of these beta-glucosides are located at 37.8 min on the E. coli
map. The genes of the bgl operon are not involved in cellobiose
utilization. Introduction of a deletion covering bgl does not affect the
ability to utilize cellobiose, arbutin, or salicin, indicating that the new
Cel+ genes provide all three functions. Spontaneous cellobiose negative
mutants also become arbutin and salicin negative. Analysis of
beta-glucoside positive revertants of these mutants indicates that there
are separate loci for utilization of each of the beta-glucoside sugars. The
genes are closely linked and may be activated from a single locus. A fourth
gene at an unknown location increases the growth rate on cellobiose. The
cel genes constitute a second cryptic system for beta-glucoside utilization
in E. coli K12.
相似文献
16.
Eicosapentaenoic and docosahexaenoic acids production by and okara-utilizing potential of thraustochytrids 总被引:3,自引:0,他引:3
K W Fan F Chen E BG Jones L LP Vrijmoed 《Journal of industrial microbiology & biotechnology》2001,27(4):199-202
Nine thraustochytrid strains isolated from subtropical mangroves were screened for their eicosapentaenoic acid (EPA) and docosahexaenoic
acid (DHA) production potential in a glucose yeast extract medium. Their ability to utilize okara (soymilk residue) for growth
and EPA and DHA production was also evaluated. EPA yield was low in most strains, while DHA level was high on glucose yeast
extract medium, producing 28.1–41.1% of total fatty acids, for all strains, with the exception of Ulkenia sp. KF13. The DHA yield of Schizochytrium mangrovei strains ranged from 747.7 to 2778.9 mg/l after 52 h of fermentation at 25°C. All strains utilized okara as a substrate for
growth, but DHA yield was lower when compared with fermentation in a glucose yeast extract medium. Journal of Industrial Microbiology & Biotechnology (2001) 27, 199–202.
Received 11 December 2000/ Accepted in revised form 29 June 2001 相似文献
17.
Background
Phosphorylated phosphatidylinositol (PtdIns) lipids, produced and modified by PtdIns kinases and phosphatases, are critical to the regulation of diverse cellular functions. The myotubularin PtdIns-phosphate phosphatases have been well characterized in yeast and especially animals, where multiple isoforms, both catalytically active and inactive, occur. Myotubularin mutations bring about disruption of cellular membrane trafficking, and in humans, disease. Previous studies have suggested that myotubularins are widely distributed amongst eukaryotes, but key evolutionary questions concerning the origin of different myotubularin isoforms remain unanswered, and little is known about the function of these proteins in most organisms. 相似文献18.
Determining the evolutionary potential of a gene 总被引:4,自引:0,他引:4
In addition to information for current functions, the sequence of a gene
includes potential information for the evolution of new functions. The
wild-type ebgA (evolved beta-galactosidase) gene of Escherichia coli
encodes a virtually inactive beta-galactosidase, but that gene has the
potential to evolve sufficient activity to replace the lacZ gene for growth
on the beta-galactoside sugars lactose and lactulose. Experimental
evidence, which has suggested that the evolutionary potential of Ebg enzyme
is limited o two specific amino acid replacements, is limited to examining
the consequences of single base- substitutions. Thirteen
beta-galactosidases homologous with the Ebg beta-galactosidase are widely
dispersed, being found in gram-negative and gram-positive eubacteria and in
a eukaryote. A comparison of Ebg beta-galactosidase with those 13
beta-galactosidases shows that Ebg is part of an ancient clade that
diverged from the paralogous lacZ beta- galactosidase over 2 billion years
ago. Ebg differs from other members of its clade at only 2 of the 15
active-site residues, and the two mutations required for full Ebg
beta-galactosidase activity bring Ebg into conformity with the other
members of its clade. We conclude that either these are the only acceptable
amino acids at those positions, or all of the single-base-substitution
replacements that must arise as intermediates on the way to other
acceptable amino acids are so deleterious that they constitute a deep
selective valley that has not been traversed in over 2 billion years. The
evolutionary potential of Ebg is thus limited to those two replacements.
相似文献
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