The sequence on the strand of the helix is TACCGGATC.
5`... ccagattg ... 3` 3`... ggtctaac ... 5`Remember always A complementarly binds with t with a double bond (hydrogens bonds)(a=t) in the same way g with c by means of 3hydrogen bonds between them.....
http://answers.yahoo.com/question/index?qid=20080930173054AASE7Zy
The base sequence CAGACT corresponds to the DNA strand, and it would be complementary to the RNA strand with the sequence GUCUGA. Therefore, the original strand is the DNA strand.
A TG CAGATTCTCTAAG
During DNA replication, the enzyme DNA polymerase catalyses the formation of new strands of DNA, using the old strands as models. DNA has a double-helix structure, with two strands forming each helix. Each strand is made up of DNA nucleotides, with the genetic information encoded in the sequence of different nucleotides (different nucleotides are distinguished by molecules called 'bases' attached to them, so the sequence of nucleotides is known as the 'base sequence'). The base sequence of one strand is complementary to that of its' neighbour - the base A binds with T, and C with G, so if one strand had the sequence ATTACA, the base sequence of the complementary strand would be TAATGT. When DNA polymerase creates a new DNA strand, it does so by matching nucleotides to the base sequence of one of the strands - the template strand. New nucleotides are brought in, which match the template in a complementary fashion (ie. A-T, C-G), and join to become one new strand. This new strand is complementary to the template.
5`... ccagattg ... 3` 3`... ggtctaac ... 5`Remember always A complementarly binds with t with a double bond (hydrogens bonds)(a=t) in the same way g with c by means of 3hydrogen bonds between them.....
In DNA, the other strand of the helix would have complementary base pairs to the original strand. Adenine pairs with thymine, and cytosine pairs with guanine. So, if one strand has the sequence ATTGC, the complementary strand would be TAACG.
The complementary sequence to GAATGC is CTTACG. In DNA, adenine pairs with thymine, so if one strand has a guanine (G), the complementary strand will have a cytosine (C); and if one strand has an adenine (A), the complementary strand will have a thymine (T).
lol i hate this question........its in meh science book
http://answers.yahoo.com/question/index?qid=20080930173054AASE7Zy
The base sequence CAGACT corresponds to the DNA strand, and it would be complementary to the RNA strand with the sequence GUCUGA. Therefore, the original strand is the DNA strand.
A TG CAGATTCTCTAAG
During DNA replication, the enzyme DNA polymerase catalyses the formation of new strands of DNA, using the old strands as models. DNA has a double-helix structure, with two strands forming each helix. Each strand is made up of DNA nucleotides, with the genetic information encoded in the sequence of different nucleotides (different nucleotides are distinguished by molecules called 'bases' attached to them, so the sequence of nucleotides is known as the 'base sequence'). The base sequence of one strand is complementary to that of its' neighbour - the base A binds with T, and C with G, so if one strand had the sequence ATTACA, the base sequence of the complementary strand would be TAATGT. When DNA polymerase creates a new DNA strand, it does so by matching nucleotides to the base sequence of one of the strands - the template strand. New nucleotides are brought in, which match the template in a complementary fashion (ie. A-T, C-G), and join to become one new strand. This new strand is complementary to the template.
in DNA, each base pairs up with only one other base
TGCA
A complimentary DNA sequence is the genetic code on the partner strand that aligns with and corresponds to (matches) the code on the primary strand. Each nucleotide has a match, A matches T and C matches G, therefore the complimentary sequence for ATCGA is TAGCT.
complementary to each other, meaning that the sequence of bases in one strand determines the sequence in the other strand. This allows for accurate replication of genetic information during cell division and ensures genetic stability in offspring.