PolyQ-length dependence of Httex1 aggregation. A, the aggregation propensity of Httex1–23Q (black, n = 3–5), Httex1–15Q (blue, n = 3), and Httex1–7Q (green, n = 3) at 60 μm. The amount of soluble protein was assessed by analytical RP-UHPLC, and all data were normalized to t0h and are represented as the mean ± S.D. B, the CD spectra of Httex1–23Q (black), Httex1–15Q (blue), and Httex1–7Q (green) at the initial and final aggregation time points. C, TEM images of the aggregates formed by Httex1–23Q/15Q/7Q at the final aggregation time points. The white arrow indicates one of the oligomeric structures formed by Httex1–7Q. D, the aggregation propensity of Httex1–23Q (black, n = 3), Httex1–29Q (purple, n = 5), Httex1–37Q (green, n = 5), and Httex1–43Q (blue, n = 5) at 15 μm. All data were normalized to t0h and are represented as the mean ± S.D. E, the CD spectra of Httex1–23Q (black), Httex1–29Q (purple), Httex1–37Q (green), and Httex1–43Q (blue) at the initial and final aggregation time points. F, TEM images of fibrils formed by Httex1–23Q/29Q/37Q/43Q at 15 μm at the end point of aggregation. G, quantification of fibril lengths for Httex1–23Q (black, n = 419), Httex1–29Q (purple, n = 437), Httex1–37Q (green, n = 483), and Httex1–43Q (blue, n = 380) at the end point of aggregation. Solid lines represent Gaussian fits of the fibril lengths.