Ciba Foundation Symposium - Cell Differentiation by A.V.S. & Julie Knight, Editors De Rueck

By A.V.S. & Julie Knight, Editors De Rueck

Content:
Chapter 1 Chairman's beginning comments (pages 1–2): Sir Alexander Haddow
Chapter 2 common evaluation of the character of Differentiation (pages 3–17): M. Abercrombie
Chapter three unmarried mobilephone Properties—Membrane improvement (pages 18–38): Murray D. Rosenberg
Chapter four Biochemical alterations in the course of Fertilization and Early Embryonic improvement (pages 39–64): J. Brachet
Chapter five Nuclear Transplantation and mobilephone Differentiation (pages 65–78): J. B. Gurdon
Chapter 6 experiences at the suggestions rules of Haemopoiesis (pages 79–100): Michael Feldman and Ilan Bleiberg
Chapter 7 attainable Mechanisms of the move of knowledge among Small teams of Cells (pages 101–115): E. J. Ambrose
Chapter eight mobile man made actions in Induction of Tissue Transformation (pages 116–130): Tuneo Yamada
Chapter nine the matter of the Chemical Nature of Embryonic Inducers (pages 131–147): Clifford Grobstein
Chapter 10 a few points of the law of Gene Expression within the Animal mobile (pages 148–162): G. P. Georgiev
Chapter eleven keep an eye on of artificial task in the course of improvement (pages 163–177): Eugene Bell and F. Roy MacKintosh
Chapter 12 a few Experiments with regards to the Homogeneity and association of the Ribosomal RNA Genes of Xenopus laevis (pages 178–195): Max Birnstiel
Chapter thirteen covering of Genes in Cytodifferentiation and Carcinogenesis (pages 196–207): John Paul
Chapter 14 components of development and upkeep of Tumours as prepared buildings in vitro (pages 208–218): Etienne Wolff and Emilienne Wolff
Chapter 15 The interplay of Tumour and Embryonic Tissue in vivo (pages 219–245): M. E. Whisson
Chapter sixteen Chairman's remaining feedback (pages 246–247): Sir Alexander Haddow

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They altered the fatty acid composition of the microsomal phospholipids of rat hepatocytes by dietary changes and found no change in phospholipid-dependent enzyme activity. They do allow for the possibility that membrane phospholipids might have more subtle structural functions. It is apparent that the role of lipid is still enigmatic. To return to the proposal of this paper that the subunits for membrane formation are lipoprotein aggregates, reasonable hypotheses can be made for the control of membrane development.

I. Berlin: Springer. SCRIVEN, L. , and STERNLING, C. V. J,Fluid Me& 19,321-340. , and ISEMURA, T. Colloidal Stifactants. New York: Academic Press. STOECKENIUS, W. , 12,221-229. VANDENHEUVBL, F. A. Am. Oil Chem. , 43,258-264. WADDINGTON, C. (1956). Principles of Embryology, pp. 77-78. London: Allen and Unwin. WALLACH,D. F. , andZAHLER,P. (1966). Proc. Sci. ,56,1552-1559. WEISS, P. (1963). , 5, 185-193. WHALEY, W. ,KEPHART, J. In Cellular Membratres in Development, pp. 135-173,ed. Locke, M. New York: Academic Press.

The means of transfer is unknown. Miller and Cornatzer (1966),on the other hand, have recently studied changes in the phospholipid content of rabbit liver mitochondria and microsomes during late prenatal and early postnatal development of the organelles. Their experiments show that for both organelles there is an increasein protein reflecting an increase in the number of organelles per gram of wet tissue. In addition, many microsomal enzymes appear to be activated after birth. An increase in phospholipid 28 MURRAY D .

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