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Erythroid cells were fractionated by preformed Percoll density gradient from livers of 12.5 day old mouse fetuses. With combination of lysing of mature erythroid cells, the CFU-E (colony forming unit of erythroid) was enriched as high as 30% pure. The mRNA levels of the rt-genes previously cloned as genes expressed in the reticulocytes are estimated in the fractionated erythroid cells. These rt-genes show a drastic change in expression during erythroid differentiation; Their expression was not detectable at the CFU-E cell stage. But it reached to maximum at the polychromatic erythroblast (stage I) and then decreases with maturation. The result suggests that mRNA synthesis of these rt-genes may be induced after the stimulation of erythropoietin.  相似文献   
2.
A method is presented for the release of “native” thin filaments from 13-day old embryonic chick muscle without tryptic digestion or desoxycholate (DOC) solubilization of Z bands. The isolated filaments were 50–60 Å in diameter, of variable length, and formed “arrowhead-like” complexes with heavy meromyosin (HMM). In addition, the filaments interacted with purified myosin to form actomyosin as effectively as action extracted from an acetone powder of muscle. The Mg++-dependent ATPase activity and extent of superprecipitation of the synthetic actomyosin required a low concentration of Ca++, strongly suggesting the presence of troponin and tropomyosin on the thin filaments isolated from muscle at this stage of embryogenesis. The native thin filaments were more sensitive to trypsin than synthetic F-actin prepared from an acetone powder based on measurements of flow birefrengence, viscosity and the ability to activate myosin ATPase.  相似文献   
3.
In mouse reticulocytes, approximately 250 middle abundant-rare class messages were estimated to be present besides globin mRNA (OBINATA and IKAWA, 1980). Approximately 200 independent genomic clones (rt-clones) expressed in the mouse reticulocyte mRNAs were obtained from a mouse gene library. Surprisingly, most of the rt-clones are shown to be expressed even in non-erythroid tissues significantly. By the plaque hybridization method with 133 rt-clones, the pattern of expression of these genes was examined at different stages of erythroid cell maturation.  相似文献   
4.
The onset of troponin accumulation and the localization of troponin in cultured chick embryo skeletal muscle cells were studied by means of indrect immunofluorescent microscopy. At 31 hr after plating, troponin components were detected in 54–62% of total mononucleated myogenic cells and in all myotubes as longitudial fibrous structures. 3H-thymidine incorporation stduy coupled with the immunofluorescent microscopy showed that mononucleated myogenic cells at the mitotic stage did not contain troponin. As myotube maturation proceeds, the troponin-containing fibers were organized into cross-striated structures. At the myotube stage, muscle cells were labeled with 35S-methionine and proteins synthesized were analyzed by two-dimensional gel electrophoresis. It was found that myotubes in culture synthesized both fast and slow types of troponin-I and-C. Our results suggest that fast and slow types of troponin components are synthesized in cultured skeletal muscle cells before or at the early phase of myofibrillogenesis.  相似文献   
5.
The types of actin present during development of skeletal muscle in chick embryos were investigated by various electrophoretic methods. The proportions of the actin types in the tissue were estimated by a novel method involving separation of actin bands by electrophoresis, staining of the bands with Coomassie Brilliant Blue R–250, extraction of dye and measurement of its absorbance.
Results showed that α-, β- and γ-actins were all present in embryonic skeletal muscle and were assembled into myofibrils. However, β- and γ-actins disappeared from myofibrils as muscle development proceeded. In embryonic muscle, the proportions of the three actin types in the soluble and myofibril fractions were different: their amounts were in the order β>γ>α in the soluble fraction, and α>β>γ in the myofibril fraction.  相似文献   
6.
A collagen film in which the collagen fibers were aligned was prepared and characterized by scanning electron microscopy. Cell orientation on this film was studied in vitro using human fibroblasts and chick embryo myoblasts. Ninety-four percent of innoculated fibroblasts were aligned along the direction of the collagen fiber. The cell orientation was disturbed when cytochalasin B or colchicine was added to the culture medium. The myoblasts showed a similar alignment along the direction of collagen fiber. The scanning electron microscopic observation revealed that none of the cytoplasmic extensions had consistent relationships to the direction of collagen fiber. Myoblast fusion was accelerated on the aligned membrane as compared to a randomly oriented film, suggesting some role of contact guidance in muscle cell differentiation.  相似文献   
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