DOWNLOADS Iron in Biology Molecular Structures Cellular Processes and Living Systems by Yoshitsugu Shiro Hitomi Sawai Takehiko Tosha
Amazon audio books download ipod Iron in Biology: Molecular Structures, Cellular Processes and Living Systems by Yoshitsugu Shiro, Hitomi Sawai, Takehiko Tosha (English Edition)#
Iron in Biology: Molecular Structures, Cellular Processes and Living Systems Yoshitsugu Shiro, Hitomi Sawai, Takehiko Tosha ebook#
Page: 356
Format: pdf / epub / kindle
ISBN: 9781837674404
Publisher: RSC
Heavy metals essential to organisms are termed “biometals”. Bio-inorganic chemistry deals with the functions of biometals in vivo at an atomic to molecular level, while cellular regulation of biometals such as absorption and transport has been investigated in cell biology. Although these research fields are independently developed and matured, interdisciplinary information across these fields is required for a comprehensive understanding of the roles of biometals at atomic to molecular, cellular and organism levels. This book focuses on iron (Fe) in cells, since it is the most abundant metal in living system and is involved in a variety of physiological events such as enzymatic reactions as catalysts and signal transduction. Both excess and shortage of iron cause serious diseases such as anaemia, cancer and neuronal degeneration. The cellular systems consisting of many specific proteins strictly control the iron contents through the iron dynamics in cells including absorption, sensing, storage, transport and usage. Resulting from a 5-year project on Integrated Biometal Science in Japan, this book not only documents the latest research but also fills a gap between chemical understanding and our real life, by providing fundamental ideas on genetics, drugs and environmental health.1.1 Structural Organization of the Human Body Life processes of the human body are maintained at several levels of structural organization. These include the chemical, cellular, tissue, organ, organ system . The Ubiquity of Iron - ACS Chemical Biology (ACS Publications) The importance of iron in living systems can be traced to the many complexes within which it is found, to its chemical mobility in . Electron transfer in biological systems Iron plays a key role in biology and the biological redox potential of iron spans a very wide range. For example, E1/2 < –500 mV for the human . A Systems Biology Approach to Iron Metabolism - PMC Iron is critical to the survival of almost all living organisms. However, inappropriately low or high levels of iron are detrimental and contribute to a . [PDF] Biochemistry and Molecular Biology: How Life Works All cellular processes involve water, so the pH of cellular and extracellular fluids plays an enormous role in biological chemistry. The pH of the cytoplasm . [PDF] The origin of life: from molecules to cells All living systems are roughly made out of four different macromolecules: carbohydrates, lipids, proteins, and nucleic acids. Those molecules . Restored iron transport by a small molecule promotes absorption . Iron plays a crucial role in a wide variety of biological functions, which in turn rely on the proteins that transport the metal in and out . Iron in Biology: Molecular Structures, Cellular Processes and Living . This book focuses on iron (Fe) in cells, since it is the most abundant metal in living system and is involved in a variety of physiological events such as .