All Antigens Have Epitopes Of The Same Shape at Dominique Ortega blog

All Antigens Have Epitopes Of The Same Shape.  — an antigen can have one or more epitopes. In general, antibodies bind epitopes. Each of these epitopes can interact with different antigen. it is possible for two or more different antigens to have an epitope in common. the small site on an antigen to which a complementary antibody may specifically bind is called an epitope or antigenic determinant. In these cases, antibodies targeted to one antigen are able to react with all other antigens carrying the same epitope. This is usually one to six. some antigens, such as polysaccharides, usually have many epitopes, but all of the same specificity.  — most antigens in humans are proteins, peptides, or polysaccharides; However, lipid and nucleic acids can also act as antigens when combined with proteins or polysaccharides.  — many antigens have a number of distinct epitopes on their surfaces. Most antigens have many determinants (i.e., they are multivalent).

Overview of Specific Adaptive Immunity · Microbiology
from philschatz.com

In general, antibodies bind epitopes.  — most antigens in humans are proteins, peptides, or polysaccharides; Each of these epitopes can interact with different antigen. Most antigens have many determinants (i.e., they are multivalent).  — many antigens have a number of distinct epitopes on their surfaces.  — an antigen can have one or more epitopes. In these cases, antibodies targeted to one antigen are able to react with all other antigens carrying the same epitope. it is possible for two or more different antigens to have an epitope in common. However, lipid and nucleic acids can also act as antigens when combined with proteins or polysaccharides. the small site on an antigen to which a complementary antibody may specifically bind is called an epitope or antigenic determinant.

Overview of Specific Adaptive Immunity · Microbiology

All Antigens Have Epitopes Of The Same Shape Each of these epitopes can interact with different antigen. In general, antibodies bind epitopes. some antigens, such as polysaccharides, usually have many epitopes, but all of the same specificity. Each of these epitopes can interact with different antigen. the small site on an antigen to which a complementary antibody may specifically bind is called an epitope or antigenic determinant.  — an antigen can have one or more epitopes. In these cases, antibodies targeted to one antigen are able to react with all other antigens carrying the same epitope. This is usually one to six. it is possible for two or more different antigens to have an epitope in common. However, lipid and nucleic acids can also act as antigens when combined with proteins or polysaccharides.  — most antigens in humans are proteins, peptides, or polysaccharides; Most antigens have many determinants (i.e., they are multivalent).  — many antigens have a number of distinct epitopes on their surfaces.

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