Исчерпывающий путеводитель по редактированию генов.
Меню
Главная Учиться Новости Спросить Atlas
Изучить Технологии Заболевания Методы лечения Клинические исследования Компании Учёные Гены Исследования Учреждения
За пределами медицины Сельское хозяйство Этика Инвестирование Карта мира
Обучение и инструменты Начните здесь Глоссарий А–Я Сравнить технологии Хронология Списки и рейтинги ИИ-агенты ★ Сохранено API
О нас О нас Методология Источники данных Редакционная политика Контакты Отказ от ответственности

🧭 Режим с подсказками
Впервые в генетике? Мы объясняем каждый термин прямо в процессе просмотра, простым языком. Те же страницы — со встроенной подсказкой.

⚡ Взгляд эксперта
Биология вам уже знакома. Только содержание — чисто и компактно, без лишних пояснений. Это вид по умолчанию.

Язык интерфейса
Светлый режим

Disease · Rare genetic disease

Alpha-1 Antitrypsin Deficiency

A single-letter mutation that damages the lungs by absence and the liver by accumulation — and the first disease where a disease-causing point mutation was corrected in vivo in humans.

Phase III liverlungbase editingSERPINA1
Clinical research Being tested in people in registered clinical trials. Being in trials is not evidence that a treatment works or is safe.

Простое объяснение

The liver makes a protein that protects lung tissue from being digested by the body's own enzymes. In alpha-1 antitrypsin deficiency, one letter of that gene is wrong, so the protein misfolds. Two things go wrong at once: the lungs lack protection and are damaged over decades, and the misfolded protein piles up inside liver cells and damages them. Because both problems come from the same wrong letter, correcting it should fix both — which is why this became the proving ground for correcting mutations in living people.

Углубиться в тему

AATD is most commonly caused by the SERPINA1 PiZ allele (E342K), producing a misfolded protein that polymerises within hepatocytes. Homozygotes suffer both loss-of-function lung disease — early emphysema, accelerated by smoking — and gain-of-function liver disease from intracellular accumulation. Augmentation therapy addresses only the lung component. BEAM-302 uses in vivo base editing to correct the PiZ mutation directly, and reported the first clinical demonstration of correcting a disease-causing point mutation in vivo in humans; a single 60 mg dose raised alpha-1 antitrypsin above the level associated with lung protection in all patients dosed, and the programme entered pivotal development in 2026.

Why correction rather than knockout

Most in vivo editing programmes so far switch a gene off, because knockouts are easy and several diseases are caused by too much of something. AATD needs the opposite: the protein must be restored, and the toxic misfolded version removed. One precise letter change accomplishes both. It is the cleanest available demonstration that in vivo correction — not just disruption — works in people.

Why correction rather than knockout
Liver cells, where the misfolded protein accumulates. Illustration generated for The CRISPR Atlas — a visual aid, not a photograph or a literal depiction of molecular structure.

Sources

Connected in the Atlas

Every entry on this site is linked to the others it relates to. These connections are part of the record, not a search result.

Только в образовательных целях Эта страница — справочный материал, а не медицинская консультация. Статусы исследований и регуляторных процессов меняются; проверяйте дату последнего обновления выше и уточняйте всё важное по первичным источникам, указанным на странице.