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Q.In the Haworth structure of the following carbohydrate, various carbon atoms have been numbered. The anomeric carbon is numbered as : (Drawn: the Haworth ring of beta-D-glucopyranose with carbons numbered 1-5 - ring oxygen at the top right; C1 at the right bearing OH above and H below; C5 at the top bearing the CH_2OH group; OH below at C2, OH above at C3, HO at C4.) (A) 1 (B) 2 (C) 3 (D) 5

CBSECBSE Class XII Board 2025MCQ· 1mImportance★★★★★
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The anomeric carbon is the new chiral centre created when a linear sugar cyclizes — in β\beta-D-glucopyranose, this is the carbon that becomes attached to both the ring oxygen and a hemiacetal OH group, which is C1.

The question shows a Haworth projection of β\beta-D-glucopyranose with carbons numbered 1 through 5 around the ring. You are asked to identify which of these is the anomeric carbon.

The term "anomeric carbon" comes directly from the cyclization of glucose. In the open-chain form, glucose has an aldehyde group at C1. When the ring closes, the OH group on C5 attacks that aldehyde carbon, forming a hemiacetal. That carbon — originally the aldehyde carbon — becomes a new stereocentre. It is bonded to the ring oxygen, to a hydrogen, to an OH group, and to the rest of the ring. This carbon is called the anomeric carbon, and the two possible stereochemical arrangements at this centre are called the α\alpha and β\beta anomers.

In the drawn structure, the ring oxygen is at the top right. The carbon immediately to the right of that oxygen, bearing an OH group above the ring and an H below, is C1. That is the carbon that was the aldehyde carbon in the open chain. It is the only carbon in the ring that is attached to two oxygens — one from the ring and one from the OH group. No other ring carbon has this feature.

Let’s walk through the numbering systematically.

  1. Identify the ring oxygen. In the standard Haworth drawing of β\beta-D-glucopyranose, the oxygen is placed at the top right corner of the hexagon. This oxygen is not numbered — it is the bridging atom from the cyclization.

  2. Locate C1. The carbon immediately clockwise from the ring oxygen (at the rightmost position of the ring) is C1. In the β\beta anomer, the OH at C1 points upward (on the same side as the CH2_2OH group at C5). This carbon is the hemiacetal carbon.

  3. Check the other carbons. Moving clockwise around the ring: the next carbon (at the bottom right) is C2, with an OH below. Then C3 at the bottom left, with OH above. Then C4 at the top left, with OH below. Finally, C5 at the top, bearing the CH2_2OH group. None of these carbons are attached to two oxygens — they each have only one OH group and are part of the ring. …

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