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Loop label

Figure 15.22 T-cell receptor stucture shown as a ribbon diagram. The anbgen-binding site is formed by CDR loops (labeled 1 to 3) from the Va and Vp domain, as for antibodies. Figure 15.22 T-cell receptor stucture shown as a ribbon diagram. The anbgen-binding site is formed by CDR loops (labeled 1 to 3) from the Va and Vp domain, as for antibodies.
Open the pulse program file ppexamO.seq using the Edit I Pulse program command. Add to the pulse sequence the loop label 3 in front of the command (p1 ph1) f1, append to the line wr 0 the increment instructions and... [Pg.142]

Figure 26-6 (A) Electron micrograph of a heteroduplex DNA molecule constructed from complementary strands of phages A,b2 and Ximm434. In AJb2 a segment of X DNA has been deleted producing a deletion loop (labeled b2) and in Ximm434 a piece of DNA from phage 434 has been substituted for X DNA resulting in a "nonhomology bubble" (labeled / f). The... Figure 26-6 (A) Electron micrograph of a heteroduplex DNA molecule constructed from complementary strands of phages A,b2 and Ximm434. In AJb2 a segment of X DNA has been deleted producing a deletion loop (labeled b2) and in Ximm434 a piece of DNA from phage 434 has been substituted for X DNA resulting in a "nonhomology bubble" (labeled / f). The...
FIGURE 35.1 Structure of fi-LG with p strands and joining loops labeled. (Reprinted from Structure, 5(1), Brownlow, S., Morais, C.J.H., Cooper, R., Hower, D.R., Yewdall, S.J., Polikarpov, I., North, A.C.T., and Sawyer, L., Bovine p-lactoglobulin at 1.8 A resolution-still an enigmatic lipocalin, 481-495. Copyright 1997, with permission from Elsevier.)... [Pg.730]

Program 2 (page 116) gives the solution for the explicit method. The DO loop labeled 3 0 comprises the statement of Eq. (14). This is followed by the boundary condition [Eqs. (34) and (36)]. The potential is gradually varied, the current ratio reaches a maximum of 1.00. [Pg.91]

Figure 2.2 FLiK constructs. Structurally flexible are labeled with a thiol reactive fluorophore. Conformational changes triggered by ligand binding alter the emission properties of the fluorophores. Activation loop labeled protein kinases for the detection and discrimination of type II and type III inhibitors. (Adapted with permission from Macmillan Publishers Ltd [6], copyright 2009.)... Figure 2.2 FLiK constructs. Structurally flexible are labeled with a thiol reactive fluorophore. Conformational changes triggered by ligand binding alter the emission properties of the fluorophores. Activation loop labeled protein kinases for the detection and discrimination of type II and type III inhibitors. (Adapted with permission from Macmillan Publishers Ltd [6], copyright 2009.)...
Equistability of a homogeneous stable stationary state on the upper branch of the hysteresis loop, labelled I in Fig. 11.1, with a homogeneous stable stationary state on the lower branch, labelled II, occurs at one value of the influx coefficient k within the loop. Say that point occms at the location of line A. The predictions of the stationary solution of the master stochastic master equation are (a) the minimmn of the bimodal stationary probability distribution is located on the separatrix, and (b) at equistability the probability of fluctuations P(c) obeys the condition... [Pg.108]

As an illustration of the basic features of graphs, consider the reflexive, labeled graph Q depicted in Fig. 1.7c that represents the similarily relations among hypothetical compounds 1-5 depicted in Fig. 1.7a, b. A compound identifier, which is a number in the present case, labels each vertex and a similarity value labels each edge of g. Since the vertices represent distinct molecules they are distinguishable, a feature that influences the statistical mechanical features of networks vide injra) [175]. As noted earlier, the graph is reflexive because each vertex has an associated graph loop labeled by the value of the self-similarity of the molecule that... [Pg.46]

A nested loop must be fully contained within its outer loop. It is advisable to use loop labels for identification when nesting loops. [Pg.171]

So let us look at the multiplication operation. First, another type of loop is being used. The Infinite Loop is not always supported by sjoithesizers owing to the unpredictable nature of their operation - the loop could be unrolling forever if a condition that causes an exit is never met. Similarly, the While Loop is often not supported for synthesis. The s)mtax of bodi these alternative loop types is shown in Box 6.11. This loop is controlled by the counter I, which increments on each pass around the loop. When I reaches the n - the number of bits in A - the Exit statement quits the loop. This statement does not necessarily require the loop label in this example but one should be used when embedding loops to darify which loop is to be stopped. Next is another loop control statement that will immediately start the next iteration of the loop, assuming its condition is met. They are both discussed in Box 6.12. [Pg.203]

The optional label is the label associated with the next statement. The optional loop label refers to the loop that must begin its next iteration. The loop label must only be used inside the actual loop to which it refers. The example low illustrates how one Next statement can cause one loop to skip to the next iteration and others to restart altogether. [Pg.206]

Without a loop label the loop at the present nested level begins its next iteration. [Pg.206]


See other pages where Loop label is mentioned: [Pg.265]    [Pg.1489]    [Pg.1513]    [Pg.1616]    [Pg.606]    [Pg.131]    [Pg.135]    [Pg.138]    [Pg.576]    [Pg.600]    [Pg.703]    [Pg.579]    [Pg.682]    [Pg.148]    [Pg.88]    [Pg.627]    [Pg.387]    [Pg.505]   
See also in sourсe #XX -- [ Pg.206 ]




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