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Q.Restriction Endonuclease – Hind II always cuts DNA molecules at a particular point by recognising a specific sequence of: (A) Six base pairs (B) Four base pairs (C) Seven base pairs (D) Three base pairs

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Hind II is a restriction endonuclease that recognises a specific palindromic sequence of six base pairs and cuts within it. The correct answer is (A) Six base pairs.

The Concept: How Restriction Enzymes Recognise Their Target

Restriction endonucleases (restriction enzymes) are molecular scissors that bacteria use to defend against viruses. Each enzyme scans the DNA for a specific short sequence — its recognition site — and cuts the DNA at or near that site. The key point is that different enzymes have different recognition sequences, and the length of that sequence determines how often the enzyme will cut.

Hind II (pronounced "Hin-dee two") was one of the first restriction enzymes discovered. It was isolated from the bacterium Haemophilus influenzae strain Rd. Its recognition site is:

5' - G T Py Pu A C - 3'

3' - C A Pu Py T G - 5'

Here, Py stands for either pyrimidine (C or T), and Pu stands for either purine (A or G). So the sequence is not absolutely fixed at every position — it allows some flexibility — but the length of the recognised sequence is fixed.

Count the bases in that recognition sequence: G, T, Py, Pu, A, C. That's six positions on each strand.

Tip

A quick way to remember: Most Type II restriction enzymes used in molecular biology recognise 4, 6, or 8 base pair sequences. Hind II is a classic 6-base cutter. EcoRI (from E. coli) also recognises 6 bases: GAATTC.

Step-by-Step Reasoning

  1. Identify what the question is asking. The question asks for the length of the specific sequence that Hind II recognises — not the exact sequence itself, but how many base pairs it spans.

  2. Recall the known recognition site of Hind II. From standard molecular biology knowledge, Hind II recognises the degenerate sequence GTPyPuAC (where Py = C or T, Pu = A or G). This is a hexanucleotide sequence — six nucleotides long.

  3. Count the base pairs. A recognition site written as a sequence of six nucleotides on one strand corresponds to six base pairs in the double-stranded DNA. Each nucleotide on one strand pairs with a complementary nucleotide on the opposite strand, so the site spans six base pairs.

  4. Eliminate the other options.

    • (B) Four base pairs — This is the length recognised by enzymes like MspI (CCGG) or TaqI (TCGA). Hind II is not a 4-base cutter.
    • (C) Seven base pairs — Some rare-cutting enzymes recognise 7 or 8 base pairs (e.g., NotI recognises 8 bases: GCGGCCGC). Hind II is not one of them. …

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