Б. Мезомерия пептидной связи

Как всякая карбоксамидная связь, пептидная связь стабилизирована за счёт мезомерии (резонансно стабилизирована) (см. Химические связи) и поэтому является практически плоской (планарной). Вращение вокруг связи C—N требует больших затрат энергии и, следовательно, затруднено. На схеме плоскость, в которой расположены 6 атомов пептидной группы, окрашена в светло-голубой цвет.


Биомолекулы. Пептиды и белки / Пептидная связь

Статьи раздела «Пептидная связь»:

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Isotope Effects: in the Chemical, Geological, and Bio Sciences / As the title suggests, Isotope Effects in the Chemical, Geological and Bio Sciences deals with differences in the properties of isotopically substituted molecules, such as differences in the chemical and physical properties of water and the heavy waters. Since the various fields in which isotope effIsotope Effects: in the Chemical, Geological, and Bio Sciences
As the title suggests, Isotope Effects in the Chemical, Geological and Bio Sciences deals with differences in the properties of isotopically ...
Введение в молекулярную биологию / Задача предлагаемой книги состоит в ознакомлении читателей с важнейшими фактами и идеями, которыми располагает молекулярная биология на сегодняшний день.Введение в молекулярную биологию
Задача предлагаемой книги состоит в ознакомлении читателей с важнейшими фактами ...
Role of TCF in body axis formation: Discovery of a Dual Action of XTCF-3 in Xenopus Body Axis Formation / A novel role of TCF family in body axis formation. Revolutionary high impact discoveries are described, elucidating the missing link in the Wnt pathway and protein-TCF combinations with dual functions. By studying the primary axis formation of Xenopus laevis, it was firstly shown that, in combinatioRole of TCF in body axis formation: Discovery of a Dual Action of XTCF-3 in Xenopus Body Axis Formation
A novel role of TCF family in body axis formation. Revolutionary high impact discoveries are described, elucidating the missing link in the Wnt ...
Asphaltenes: Chemical Transformation during Hydroprocessing of Heavy Oils (Chemical Industries) / During the upgrading of heavy petroleum, asphaltene is the most problematic impurity since it is the main cause of catalyst deactivation and sediments formation. Exploring many aspects related to asphaltenes composition and conversion, Asphaltenes: Chemical Transformation during Hydroprocessing of HAsphaltenes: Chemical Transformation during Hydroprocessing of Heavy Oils (Chemical Industries)
During the upgrading of heavy petroleum, asphaltene is the most problematic impurity since it is the main cause of catalyst deactivation and sediments ...