Inrecent years therehasbeen atremendousincreaseinour understandingofthe functioningofthe cellat the molecular leveL This has been achieved in the main by the invention and developmentof new methodology, particularlyin that area generally referred to as "genetic engineering. " Al though this revolution has been taking place in the field of nucleic acids research, the protein chemist has at the same timedevelopedfresh methodologytokeeppace with the re quirements ofpresent-daymolecularbiology. Today's mo lecularbiologistscannolongerbecontentwithbeingexperts inoneparticulararea alone. Theyneedtobeequallycompe tentin the laboratory at handling DNA, RNA,and proteins movingfrom one area toanotherasrequiredby theproblem thatisbeing solved. Althoughmanyof thenewtechniques in molecularbiologyare relativelyeasy tomaster, itisoften difficult for a researcher to obtain all the relevant informa tionnecessaryforsettingupandsuccessfullyapplyinganew technique. Informationisofcourse availablein the research literature, but this often lacks the depth of description that the new user requires. This requirement for in-depth prac tical details has become apparent by the considerable de mand for places on our Molecular BiologyWorkshops held at Hatfield each summer. Volume 1of this series describedpracticalprocedures for a range of protein techniques frequently used by research workers in the field of molecular biology. Because of the limitations on length necessarily inherent in producing any v vi Preface book, one obviouslyhad to be selective in the choiceof titles forVolume1. TheproductionofVolume 3,therefore,allows the development of the theme initiated in Volume 1. This volumecontains afurther selection ofdetailed protocols for arangeofanalyticalandpreparativeproteintechniques,and should be seen as a continuation of Volume 1. Companion Volumes2and4provideprotocols fornucleic acid method ology. Each methodisdescribedby an authorwhohas regularly used the technique in his or her ownlaboratory.
Inrecent years therehasbeen atremendousincreaseinour understandingofthe functioningofthe cellat the molecular leveL This has been achieved in the main by the invention and developmentof new methodology, particularlyin that area generally referred to as "genetic engineering. " Al though this revolution has been taking place in the field of nucleic acids research, the protein chemist has at the same timedevelopedfresh methodologytokeeppace with the re quirements ofpresent-daymolecularbiology. Today's mo lecularbiologistscannolongerbecontentwithbeingexperts inoneparticulararea alone. Theyneedtobeequallycompe tentin the laboratory at handling DNA, RNA,and proteins movingfrom one area toanotherasrequiredby theproblem thatisbeing solved. Althoughmanyof thenewtechniques in molecularbiologyare relativelyeasy tomaster, itisoften difficult for a researcher to obtain all the relevant informa tionnecessaryforsettingupandsuccessfullyapplyinganew technique. Informationisofcourse availablein the research literature, but this often lacks the depth of description that the new user requires. This requirement for in-depth prac tical details has become apparent by the considerable de mand for places on our Molecular BiologyWorkshops held at Hatfield each summer. Volume 1of this series describedpracticalprocedures for a range of protein techniques frequently used by research workers in the field of molecular biology. Because of the limitations on length necessarily inherent in producing any v vi Preface book, one obviouslyhad to be selective in the choiceof titles forVolume1. TheproductionofVolume 3,therefore,allows the development of the theme initiated in Volume 1. This volumecontains afurther selection ofdetailed protocols for arangeofanalyticalandpreparativeproteintechniques,and should be seen as a continuation of Volume 1. Companion Volumes2and4provideprotocols fornucleic acid method ology. Each methodisdescribedby an authorwhohas regularly used the technique in his or her ownlaboratory.
Proteins are an integral part of molecular and cellular structure and function and are probably the most purified type of biological molecule. In order to elucidate the structure and function of any...
Volume 16 marks the beginning of a special topic series devoted to modern techniques in protein NMR, under the Biological Magnetic Resonance series. This volume is being followed by Volume 17 with...
Large biomolecules which comprise one or more long chains of amino acid residues are known as proteins. The sequence of amino acids in a protein is governed by the gene sequence. The sequence is...
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