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Although both ends of a microtubule can gain or lose subunits, one end (called the plus end) polymerizes and depolymerizes at a higher rate than the other end (the minus end). For spindle microtubules, the plus ends are in the center of the spindle, and the minus ends are at the poles. Motor proteins that move along microtubules specialize in walking either toward the plus end or toward the minus end; the two types are called plus end–directed and minus end–directed motor proteins, respectively. Given what you know about chromosome movement and spindle changes during anaphase, predict which type of motor proteins would be present on (a) kinetochoremicrotubules and (b) nonkinetochore microtubules

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Answer:

I would probably say (a) kinetochore microtubules

The motor proteins that would be present on kinetochore microtubules are MINUS end-directed motor proteins, while motor proteins that would be present on non-kinetochore microtubules are PLUS end-directed motor proteins.

Kinesin and dynein are two major types of motor proteins associated with movement along microtubules.

These motor proteins (kinesin and dynein) move along microtubules but in opposite directions.

Kinesin moves toward the plus end of the microtubule, whereas dynein moves toward the minus end of the microtubule.

In conclusion, the motor proteins that would be present on kinetochore microtubules are MINUS end-directed motor proteins, while motor proteins that would be present on non-kinetochore microtubules are PLUS end-directed motor proteins.

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