A model of growth of icosahedral viral capsids is proposed. It takes into account the diversity of hexamers' compositions, leading to definite capsid size. We show that the observed yield of capsid production implies a very high level of self-organization
Nowwecanorganizealltheseresultsinasingletablethatfollows.ToeachvalueoftriangularnumberTcorrespondsauniquepartitioninto1+(T 1),wherethe“1′′representstheuniquepentamertypeand(T 1)ispartitionedintoasumofcertainnumberofdi erenthexamertypes,accordingtotheformula
(T 1)=α6+β3+γ2
withnon-negativeintegersα,βandγ.
Type(p,q)
3
4
7
9
12
13
16
19
21
25
27
28
31
36N6=10(T 1)1+21+31+61+6+21+6+2+31+6+61+6+6+31+6+6+61+6+6+6+21+(4×6)1+(4×6)+21+(4×6)+31+(5×6)1+(5×6)+2+3
TableVI:Classi cationoficosahedralcapsids.Thelastcolumngives
thenumberandtypeofhexamersneededfortheconstruction
13