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1.
Wounding of quiescent white potato tuber tissue enhances chromatin-boundprotein phosphokinase activity, which exhibits two distinctphases during wound-healing. A moderate activation of the enzymesup to 20 hr after injury is followed by a dramatic increasein activity with a peak at 50 hr. This time-course resemblesthat of chromatinbound DNA-dependent RNA polymerase with a peakin activity at about 48 hr after wounding. The kinases phosphorylateendogenous proteins as well as added histones, phosvitin andcasein. The incorporated phosphate is stable under standardassay conditions, indicating the absence of protein phosphatases.Sensitivity of the incorporated phosphate toward trypsin andalkali, but not DNase, RNase, hydroxylamine or succinic acidpoints to seryl- and threonyl-bonds and proteins as acceptormolecules. Kinases from resting tissues are only weakly stimulatedeven by 100 mM MgCl2, those from wounded tissues exhibit pronouncedMg$$-optima at 5–10 mM with endogenous proteins, phosvitinand casein and 50 mM MgCl2 with histones. Wounding also increasesthe sensitivity of the kinases toward p-hydroxymercuribenzoate. Chromatin preparations from both resting and wounded tissuescontain about 40 protein bands after polyacrylamide disc gelelectrophoresis. In vitro phosphorylation of these proteinsin chromatin from quiescent tissues is comparably low and uniform.Wounding induces changes in the protein and phosphorylationpattern with a general enhancement of phosphorylative capacityand preferential phosphorylation of low molecular weight proteins. (Received August 10, 1981; Accepted November 18, 1981)  相似文献   
2.
We have isolated an unusual T cell receptor chain cDNA clone (7.1) from a library made from RNA derived from adult thymus of C57BL/Ka mice. This cDNA clone corresponds to the appropriately processed C1 constant region exons preceded by 1.5 kb of J-C1 intron. The 7.1 coding region is extremely homologous to the C1 gene of BALB/c mice, differing at the protein level by a single deletion (alanine 139) and a single substitution. This latter change eliminates the sole N-linked sugar attachment site, providing a basis for strain-specific glycosylation patterns. The J-C1 intronic region contains two DNA segments (termed J1 and J2) that are highly reminiscent of joining (J) segments; both have potentially functional recombination and donor splice sequences flanking an open reading frame. Northern analysis suggests that 7.1 may be derived from a large, variable region-containing precursor.  相似文献   
3.
Willi Jahnen  Klaus Hahlbrock 《Planta》1988,173(4):453-458
Characteristic enzymes of general phenylpropanoid metabolism (phenylalanine ammonialyase) and of the flavonoid-glycoside and furanocoumarin branch pathways (chalcone synthase and S-adenosyl-l-methionine: bergaptol O-methyltransferase, respectively) were localized immuno-histochemically in cross-sections of various aerial parts of parsley (Petroselinum crispum) at different stages of seedling development. Phenylalanine ammonia-lyase occurred predominantly in epidermal and oil-duct epithelial cells, but was also detectable in other tissue parts. The two pathway-specific enzymes were localized in the epidermis (chalcone synthase) and in oil ducts (bergaptol O-methyl-transferase). High chalcone-synthase concentrations occurred very early in leaf development and then declined. High levels of the methyltransferase were present at all times investigated. The temporal and spatial at all times investigated. The temporal and spatial distribution of all three enzymes is in agreement with the time courses and sites of accumulation of the biosynthetic end products.Abbreviations BMT S-adenosyl-l-methionine: bergaptol O-methyltransferase - CHS chalcone synthase - PAL phenylalanine ammonia-lyase  相似文献   
4.
Zusammenfassung 1. Das Bewegungsverhalten der Coelomzellen des EchinoidenPsammechinus miliaris Gmel. wird an kleinen von Stacheln, Füßchen und Pedicellarien befreiten Stellen der Skelettoberfläche in Periproctnähe untersucht.2. Aus dem freiliegenden Bälkchenwerk treten Coelomzellen aus, von denen nur die rotbraunen Amoebocyten auf dem hellen Kalkuntergrund im Auflicht (Ultropak;E. Leitz) sichtbar sind.3. Nach einigen Stunden ist die Wundfläche mit einer dicken rötlichen Zellmasse bedeckt, dem primären Wundverschluß. Außer den Coelomzellen enthält der Wundverschluß noch verschieden große Kalkpartikel, die vom Abschleifen der Versuchsstelle herrühren.4. Bei direkter Beobachtung ist weder an den rotbraunen Amoebocyten noch am Wundverschluß die geringste Bewegung zu erkennen.5. Zeittransformation (Zeitraffung [Z.R.] auf 1/240 und 1/480) zeigt die mit erheblicher Ortsverlagerung und Metabolie verbundene Bewegung der allein wahrehmbaren rotbraunen Amoebocyten auf der Wundfläche. Im scheinbar in Ruhe befindlichen Wundverschluß findet eine ständig hin- und herwogende Bewegung der Zell-Kalkamsse statt.6. Bereits nach 6 bis 7 Stunden ist das Operationsfeld völlig geglättet; die Lücken im Kalkskelett sind kaum noch zu erkennen infolge der neu eingebauten Kalkelemente. Die eigentlichen Heilungsvorgänge (Wiederherstellung der Feinstruktur des Kalkskelettes) erfolgen unterhalb des primären Wundverschlusses, sind also nicht der Beobachtung zugängig.7. Wird der primäre Wundverschluß im ganzen vorsichtig abgehoben und zerzupft, so kann das Bewegungsverhalten der entstandenen kleinen und großen Aggregate im Durchlicht unter Z.R. untersucht werden.8. Die im zerriebenen Explantat erhaltenen Coelomzell-Aggregate aller Größen weisen erhebliche Ortsveränderungen auf; oft breiten sie sich langsam aus unter Auswanderung zehlreicher randlich liegender Zellen. An den Außenzonen mittlerer und großer Aggregate werden plasmatische Netze sichtbar, die ständig ihre Gestalt und Maschenweite ändern.9. Diese Plasma-Netze bilden die Grundlage der Aggregate; ihre Kontraktionen und Dilatationen bewirken die Ortsverlagerungen der Aggregate (Netzbildende Coelomzellen;Kuhl 1937).10. Wenigzellige Aggregate vereinigen sich in den allermeisten Fällen, sobald ein gewisser Abstand überbrückt ist. Mittlere und große Aggregate gehen häufig eine Verbindung ein; meist werden vorher lockere Coelomzell-Brücken hergestellt. In manchen Fällen gleiten die Aggregate aneinander vorbei.11. Im polarisierten Licht lassen sich bei gekreuzten Nicols die ersten kleinen neugebildeten Kalkkristalle in den skelettbildenden Coelomzellen (= netzbildenden Zellen) nachweisen.12. Der Verschluß kleiner Kratzwunden im noch dünnen primären Wundverschluß (die Kratzer dringen bis zur abgeschliffenen Skelettoberfläche vor) wird unter Z.R. im Ultropak-Auflicht untersucht. Die Ergebnisse am explantierten Wundverschluß im Durchlicht führen zum Verständnis der Bewegungsvorgänge im ungewohnten Auflicht.13. Im zunächst verwirrenden Bewegungsgeschehen (die auffälligen rotbraunen Amoebocyten haben bei der Wundheilung keine Funktion) fallen die durch die Operationsnadel herausgerissenen kleinen Kalktrümmer auf; sie werden passiv durch die Plasmanetze bewegt, gelangen auch zufällig in die Kratzer und werden an den Rändern durch neugebildetes Kalkmaterial festgelegt oder eingebaut. Aus der Tiefe der Kratzer können lose Kalkpartikel heraufbefördert werden; auch diese werden häufig eingebaut. Die entstehenden Kalkbrücken werden schließlich untereinander verbunden und dadurch die kleine Wunde verschlossen. Das eingebaute Kalkmaterial zeigt auch unter starker Z.R. keine passive Bewegung mehr.14. In seltenen Fällen kann der Vorgang des schubweisen Aufsteigens der skelettbildenden Zellen aus dem Panzer und ihre Zusammenballung im Z.R.-Laufbild beobachtet werden.15. Ob der Einbau von herausgerissenem Kalkmaterial temporär oder dauernd ist, muß noch geprüft werden.
The locomotory behaviour of coelom cells ofPsammechinus miliaris (Echinodermata) during wound-healing
In the sea urchinP. miliaris application of time lapse photography allows a study of the very slow movements of coelom cells during the healing process of small wounds on the surface of the calcareous skeleton near the periproct. For observation and time lapse photography LEITZ-Ultropak objectives were used (incident light). Ambulacral feet, spines and pedicellaria were removed, and the animal was fixed in three places in a ring of plexiglass by means of three little screws, which touched the equator of skeleton. The rate of time transformation was 1/240 to 1/480. The film reveals the behaviour of coelom cells, which move out the skeleton to the surface of the small experimental region. Within several hours the white polished surface is covered with hundreds of red-brown amoebocytes; only these are visible on the white lime-ground; they have no function in the healing process, which takes place below the surface of the primäre Wundverschluß and therefore cannot be observed. There are three main types of coelom cells: red-brown amoebocytes, körnchenführende Zellen (white amoebocytes) and leucocytes (netzbildende or skelettbildende Zellen); the flagellated cells may be neglected here. In order to be able to study the behavior of the three main types of coelom cells, the primäre Wundverschluß, i. e. the total cell-covering of the wound, is removed and torn into microscopic fragments. These are studied (time lapse) under normal optical conditions (transmitted light). The slides show many aggregates of different sizes, single cells and little calcareous concrements torn off the skeleton. The aggregates, even the big ones, exhibit slow locomotion and change their positions considerably. If the distance of two aggregates becomes small enough, they fuse. In these cases a loose cell bridge between the two aggregates is formed. Sometimes no union occurs, although the distance is very small. Even big aggregates suddenly show considerable contractions if spreading has preceded. All movements and place changing of cell-aggregates are caused by contractions and dilatations of the plasmatic network which forms the cellular basis. Little wounds in the newly built Wundverschluß scratched with a lancet, heal within several hours. Time lapse shows passive movements of small calcareous fragments, which by chance sometimes enter the small wounds, where they help and accelerate the closing of the injury. The fragments are fixed on the edge of the wound by newly produced lime. Skeleton building coelom cells (netzbildende Coelomzellen) come up in batches from the depth of the sea urchin's skeleton; each cell contains lime crystals.
  相似文献   
5.
Pollen from three S-genotypes of Nicotiana alata was grown in vitro in the presence of S-glycoproteins isolated from styles of the same three genotypes. Pollen germination was not affected by the presence of the S-glycoproteins, but pollen tube growth of all genotypes was inhibited. S2 pollen was preferentially inhibited by the S2-glycoprotein and S3 pollen by the S3-glycoprotein. The S6-glycoprotein preferentially inhibited growth of both S2 and S6 pollen over S3 pollen. Heat treatment dramatically increased the inhibitory activity of the S-glycoproteins as inhibitors both of pollen germination and tube growth; after heat treatment, S-allele specificity of pollen tube inhibition was not detected.  相似文献   
6.
Many processes in the CNS depend on calcium. The calcium signal is transduced into an intracellular response via Ca2(+)-binding proteins, including calbindin D-28K. In many laboratories, polyclonal antibodies against chicken intestinal calbindin D-28K have been used to study its localization in the brain (normal and degenerated) of various species, including humans, but some of these antisera cross-reacted with other proteins, including calretinin. We purified recombinant rat brain calbindin D-28K to raise antisera in rabbits and purified a recombinant rat-chicken calbindin D-28K hybrid protein to immunize mice for the generation of monoclonal antibodies. These antisera were highly specific for calbindin D-28K, as demonstrated by two-dimensional Western blotting analysis. Immunohistochemical analyses combined with in situ hybridization studies demonstrated that calbindin D-28K in the Purkinje cells of the cerebellum is independent of vitamin D. The antibodies described here will be important tools for studying the regulation of expression of calbindin D-28K and its biological function in the brain and in the PNS.  相似文献   
7.
8.
Mass spectra of underivatized hexa- and heptapeptide amides related to Substance P have been obtained with a conventional electron ionization mass spectrometer using sample vaporization from a tungsten wire by the technique of rapid heating, proton transfer ionization using ammonia, and photoplate recording of spectra. These spectra exhibit little evidence of sample pyrolysis and are readily interpreted to yield amino acid sequences.  相似文献   
9.
Summary After application of a rapid, selective silver impregnation procedure for light (LM) and electron (EM) microscopy, individual neurons are distinguishable by a light silver precipitation. The silver content is sufficient that entire nerve cells can be observed light microscopically; on the other hand, electron microscopically the cytological details are still visible. Brains of mice were fixed by phosphate-buffered aldehyde perfusion, and pieces of tissue left in a 1 % K2Cr2O7 solution for 13 h before impregnation in a 0.5 % AgNO3 solution for 2h. Thick sections (30–50 m) of the impregnated tissue were cut; from these sections, suitably stained neurons were dissected out and re-embedded for ultrathin sectioning, thereby allowing observations on the same neurons at the EM level. A thin silver deposit was observed along the delimiting neuronal membrane, the microtubules and the smooth ER, including the spinal apparatus of the dendritic spines. The fine cytoplasmic details of the impregnated neurons and the surrounding tissue are well preserved and, therefore, suitable for subsequent determination of synaptic relationships of the impregnated neurons with the adjacent neuronal elements.  相似文献   
10.
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